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<ep-patent-document id="EP07827901B9W1" file="EP07827901W1B9.xml" lang="en" country="EP" doc-number="2091965" kind="B9" correction-code="W1" date-publ="20130925" status="c" dtd-version="ep-patent-document-v1-4">
<SDOBI lang="en"><B000><eptags><B001EP>ATBECHDEDKESFRGBGRITLILUNLSEMCPTIESILTLVFIRO..CY..TRBGCZEEHUPLSK....IS..MT..........................</B001EP><B003EP>*</B003EP><B005EP>J</B005EP><B007EP>DIM360 Ver 2.40 (30 Jan 2013) -  2999001/0</B007EP></eptags></B000><B100><B110>2091965</B110><B120><B121>CORRECTED EUROPEAN PATENT SPECIFICATION</B121></B120><B130>B9</B130><B132EP>B1</B132EP><B140><date>20130925</date></B140><B150><B151>W1</B151><B155><B1551>de</B1551><B1552>Beschreibung</B1552><B1551>en</B1551><B1552>Description</B1552><B1551>fr</B1551><B1552>Description</B1552></B155></B150><B190>EP</B190></B100><B200><B210>07827901.5</B210><B220><date>20071016</date></B220><B240><B241><date>20090515</date></B241><B242><date>20111010</date></B242></B240><B250>en</B250><B251EP>en</B251EP><B260>en</B260></B200><B300><B310>852575 P</B310><B320><date>20061017</date></B320><B330><ctry>US</ctry></B330></B300><B400><B405><date>20130925</date><bnum>201339</bnum></B405><B430><date>20090826</date><bnum>200935</bnum></B430><B450><date>20130515</date><bnum>201320</bnum></B450><B452EP><date>20121022</date></B452EP><B480><date>20130925</date><bnum>201339</bnum></B480></B400><B500><B510EP><classification-ipcr sequence="1"><text>C07K  14/435       20060101AFI20080513BHEP        </text></classification-ipcr><classification-ipcr sequence="2"><text>A61K  38/00        20060101ALI20080513BHEP        </text></classification-ipcr><classification-ipcr sequence="3"><text>A61K  39/00        20060101ALI20080513BHEP        </text></classification-ipcr><classification-ipcr sequence="4"><text>A61P  35/00        20060101ALI20080513BHEP        </text></classification-ipcr><classification-ipcr sequence="5"><text>C07K   7/00        20060101ALI20080513BHEP        </text></classification-ipcr><classification-ipcr sequence="6"><text>C12N  15/09        20060101ALI20080513BHEP        </text></classification-ipcr></B510EP><B540><B541>de</B541><B542>PEPTIDIMPFSTOFFE GEGEN KREBSARTEN, BEI DENEN MPHOSPH1- ODER DEPDC1-POLYPEPTIDE EXPRIMIERT WERDEN</B542><B541>en</B541><B542>PEPTIDE VACCINES FOR CANCERS EXPRESSING MPHOSPH1 OR DEPDC1 POLYPEPTIDES</B542><B541>fr</B541><B542>VACCINS PEPTIDIQUES POUR DES CANCERS EXPRIMANT LES POLYPEPTIDES MPHOSPH1 OU DEPDC1</B542></B540><B560><B561><text>WO-A2-03/040165</text></B561><B561><text>WO-A2-2006/085684</text></B561><B562><text>FERRIES ESTELLE ET AL: "Identification of p53 peptides recognized by CD8+ T lymphocytes from patients with bladder cancer", HUMAN IMMUNOLOGY, vol. 62, no. 8, August 2001 (2001-08), pages 791-798, XP002615255, ISSN: 0198-8859</text></B562><B562><text>ITO KEIICHI ET AL: "Identification of bladder cancer antigens recognized by IgG antibodies of a patient with metastatic bladder cancer.", INTERNATIONAL JOURNAL OF CANCER, vol. 108, no. 5, 20 February 2004 (2004-02-20), pages 712-724, XP002615256, ISSN: 0020-7136</text></B562><B562><text>KOMORI HIROYUKI ET AL.: 'Identification of HLA-A2- or HLA-A24-restricted CTL Epitopes Possibly Useful for Glypican-3-Specific Immunotherapy of Hepatocellular Carcinoma' CLIN. CANCER RES. vol. 12, no. 9, 01 May 2006, pages 2689 - 2697, XP003020537</text></B562><B562><text>UCHIDA N. ET AL.: 'Ring Finger Protein 43 as a New Target for Cancer Immunotherapy' CLIN. CANCER RES. vol. 10, 2004, pages 8577 - 8586, XP001544092</text></B562><B562><text>ABAZA AOUATER ET AL.: 'M phage Phosphoprotein 1 Is a Human Plus-end-directed Kinesin-related Protein Required for Cytokinesis' J. BIOL. CHEM. vol. 278, no. 30, 2003, pages 27844 - 27852, XP008109739</text></B562><B565EP><date>20110113</date></B565EP></B560></B500><B600><B620EP><parent><cdoc><dnum><anum>12155444.8</anum><pnum>2476697</pnum></dnum><date>20120214</date></cdoc><cdoc><dnum><anum>12155446.3</anum><pnum>2476698</pnum></dnum><date>20120214</date></cdoc><cdoc><dnum><anum>12155448.9</anum><pnum>2476699</pnum></dnum><date>20120214</date></cdoc></parent></B620EP></B600><B700><B720><B721><snm>FUJIOKA, Tomoaki</snm><adr><str>Department of Urology
Iwate Medical University School of Medicine
19-1 Uchimaru
</str><city>Morioka-shi
Iwate 020-8505</city><ctry>JP</ctry></adr></B721><B721><snm>NAKAMURA, Yusuke</snm><adr><str>c/o THE UNIVERSITY OF TOKYO
3-1, Hongo 7-chome</str><city>Bunkyo-ku
Tokyo 113-8654</city><ctry>JP</ctry></adr></B721><B721><snm>TSUNODA, Takuya</snm><adr><str>c/o THE UNIVERSITY OF TOKYO
3-1, Hongo 7-chome</str><city>Bunkyo-ku
Tokyo 113-8654</city><ctry>JP</ctry></adr></B721><B721><snm>OSAWA, Ryuji</snm><adr><str>c/o ONCOTHERAPY SCIENCE, INC.
2-1, Sakado 3-chome
Takatsu-ku</str><city>Kawasaki-shi
Kanagawa 213-0012</city><ctry>JP</ctry></adr></B721><B721><snm>SHIDA, Midori</snm><adr><str>c/o ONCOTHERAPY SCIENCE, INC.
2-1, Sakado 3-chome
Takatsu-ku</str><city>Kawasaki-shi
Kanagawa 213-0012</city><ctry>JP</ctry></adr></B721></B720><B730><B731><snm>Oncotherapy Science, Inc.</snm><iid>101112039</iid><irf>R1768 EP S3</irf><adr><str>2-1, Sakado 3-chome 
Takatsu-ku</str><city>Kawasaki-shi
Kanagawa 213-0012</city><ctry>JP</ctry></adr></B731></B730><B740><B741><snm>Vossius &amp; Partner</snm><iid>100751388</iid><adr><str>Siebertstrasse 4</str><city>81675 München</city><ctry>DE</ctry></adr></B741></B740></B700><B800><B840><ctry>AT</ctry><ctry>BE</ctry><ctry>BG</ctry><ctry>CH</ctry><ctry>CY</ctry><ctry>CZ</ctry><ctry>DE</ctry><ctry>DK</ctry><ctry>EE</ctry><ctry>ES</ctry><ctry>FI</ctry><ctry>FR</ctry><ctry>GB</ctry><ctry>GR</ctry><ctry>HU</ctry><ctry>IE</ctry><ctry>IS</ctry><ctry>IT</ctry><ctry>LI</ctry><ctry>LT</ctry><ctry>LU</ctry><ctry>LV</ctry><ctry>MC</ctry><ctry>MT</ctry><ctry>NL</ctry><ctry>PL</ctry><ctry>PT</ctry><ctry>RO</ctry><ctry>SE</ctry><ctry>SI</ctry><ctry>SK</ctry><ctry>TR</ctry></B840><B860><B861><dnum><anum>JP2007001122</anum></dnum><date>20071016</date></B861><B862>en</B862></B860><B870><B871><dnum><pnum>WO2008047473</pnum></dnum><date>20080424</date><bnum>200817</bnum></B871></B870><B880><date>20090826</date><bnum>200935</bnum></B880></B800></SDOBI>
<description id="desc" lang="en"><!-- EPO <DP n="1"> --><!-- EPO <DP n="2"> -->
<heading id="h0001"><b>Technical Field</b></heading>
<p id="p0001" num="0001">The present disclosure relates to the field of biological science, more specifically to the field of cancer therapy. In particular, the present disclosure relates to novel peptides that serve as extremely effective cancer vaccines, and drugs for treating and preventing tumors containing such peptides.</p>
<heading id="h0002"><b>Background Art</b></heading>
<p id="p0002" num="0002">It has been demonstrated that CD8+ cytotoxic T lymphocytes (CTLs) recognize epitope peptides derived from tumor-associated antigens (TAAs) presented on MHC class I molecules, and lyse the tumor cells. Since the discovery of the MAGE family as the first example of TAAs, many other TAAs have been discovered using immunological approaches (<nplcit id="ncit0001" npl-type="s"><text>Boon T. (1993) Int J Cancer 54: 177-80</text></nplcit>.; <nplcit id="ncit0002" npl-type="s"><text>Boon T. et al., (1996) J Exp Med 183: 725-9</text></nplcit>.; <nplcit id="ncit0003" npl-type="s"><text>van der Bruggen P et al., (1991) Science 254: 1643-7</text></nplcit>.; <nplcit id="ncit0004" npl-type="s"><text>Brichard V et al., (1993) J Exp Med 178: 489-95</text></nplcit>.; <nplcit id="ncit0005" npl-type="s"><text>Kawakami Y et al., (1994) J Exp Med 180: 347-52</text></nplcit>.). Some of them are now in clinical development as targets of immunotherapy. TAAs discovered so far include MAGE (<nplcit id="ncit0006" npl-type="s"><text>van der Bruggen P et al., (1991) Science 254: 1643-7</text></nplcit>.), gp100 (<nplcit id="ncit0007" npl-type="s"><text>Kawakami Y et al., (1994) J Exp Med 180: 347-52</text></nplcit>.), SART (<nplcit id="ncit0008" npl-type="s"><text>Shichijo S et al., (1998) J Exp Med 187:277-88</text></nplcit>.), and NY-ESO-1 (<nplcit id="ncit0009" npl-type="s"><text>Chen Y.T. et al., (1997) Proc. Natl. Acd. Sci. USA, 94: 1914-8</text></nplcit>.). On the other hand, certain gene products demonstrated to be somewhat specifically over-expressed in tumor cells have been shown to be recognized as targets for inducing cellular immune responses. Such gene products include p53 (<nplcit id="ncit0010" npl-type="s"><text>Umano Y et al., (2001) Br J Cancer, 84:1052-7</text></nplcit>.), HER2/neu (<nplcit id="ncit0011" npl-type="s"><text>Tanaka H et al., (2001) Br J Cancer, 84: 94-9</text></nplcit>.), CEA (<nplcit id="ncit0012" npl-type="s"><text>Nukaya I et al., (1999) Int. J. Cancer 80, 92-7</text></nplcit>.) and the like.</p>
<p id="p0003" num="0003">Despite significant progress in basic and clinical research concerning TAAs (<nplcit id="ncit0013" npl-type="s"><text>Rosenberg SA et al., (1998) Nature Med, 4: 321-7</text></nplcit>.; <nplcit id="ncit0014" npl-type="s"><text>Mukherji B. et al., (1995) Proc Natl Acad Sci USA, 92: 8078-82</text></nplcit>.: <nplcit id="ncit0015" npl-type="s"><text>Hu X et al., (1996) Cancer Res, 56: 2479-83</text></nplcit>.), only a very limited number of candidate TAAs suitable for treatment of cancers are presently available. TAAs that are abundantly expressed in cancer cells, and whose expression is restricted to cancer cells, would be promising candidates as immunotherapeutic targets.<!-- EPO <DP n="3"> --></p>
<p id="p0004" num="0004">Both HLA-A24 and HLA-A0201 are common HLA alleles in the Japanese and Caucasian populations (<nplcit id="ncit0016" npl-type="s"><text>Date Y et al., (1996) Tissue Antigens 47: 93-101</text></nplcit>.; <nplcit id="ncit0017" npl-type="s"><text>Kondo A et al., (1995) J Immunol 155: 4307-12</text></nplcit>.; <nplcit id="ncit0018" npl-type="s"><text>Kubo RT et al., (1994) J Immunol 152: 3913-24</text></nplcit>.; <nplcit id="ncit0019" npl-type="b"><text>Imanishi et al., Proceeding of the eleventh International Histocompatibility Workshop and Conference Oxford University Press, Oxford. 1065 (1992</text></nplcit>); <nplcit id="ncit0020" npl-type="s"><text>Williams F et al., (1997) Tissue Antigen 49: 129-33</text></nplcit>.). Thus, antigenic peptides of cancers presented by these HLA alleles may find particular utility in the treatment of cancers among Japanese and Caucasian patients. Further, it is known that the induction of low-affinity CTL in vitro usually results from exposure to high concentrations of peptide, generating a high level of specific peptide/MHC complexes on antigen-presenting cells (APCs), which can effectively activate these CTL (<nplcit id="ncit0021" npl-type="s"><text>Alexander-Miller et al., (1996) Proc Natl Acad Sci USA 93: 4102-7</text></nplcit>.).</p>
<p id="p0005" num="0005">Recent developments in cDNA microarray technologies have enabled the construction of comprehensive profiles of gene expression of malignant cells as compared to normal cells (<nplcit id="ncit0022" npl-type="s"><text>Okabe, H. et al., (2001) Cancer Res., 61, 2129-37</text></nplcit>.; <nplcit id="ncit0023" npl-type="s"><text>Lin YM. et al., (2002) Oncogene, 21;4120-8</text></nplcit>.; <nplcit id="ncit0024" npl-type="s"><text>Hasegawa S. et al., (2002) Cancer Res 62:7012-7</text></nplcit>.). This approach enables an understanding of the complex nature of cancer cells and the mechanisms of carcinogenesis and facilitates the identification of genes whose expression is deregulated in tumors (<nplcit id="ncit0025" npl-type="s"><text>Bienz M. et al., (2000) Cell 103, 311-20</text></nplcit>.). Among the transcripts identified as up-regulated in cancers, MPHOSPH1 (M-phase phosphoprotein 1; GenBank Accession No. NM_016195; SEQ ID Nos.1, 2), and DEPDC1 (DEP domain containing 1; GenBank Accession No. BM683578) have been recently discovered. See <patcit id="pcit0001" dnum="WO2004031413A"><text>WO 2004/031413</text></patcit>, <patcit id="pcit0002" dnum="WO2006085684A"><text>WO 2006/085684</text></patcit> and <patcit id="pcit0003" dnum="WO2007013665A"><text>WO 2007/013,665</text></patcit>, the entire contents of which are incorporated by reference herein. DEPDC1 has been described in the context of two different transcriptional variants - DEPDC1 V1 (SEQ ID Nos.3, 4) and DEPDC1 V2 (SEQ ID Nos: 5, 6). These genes have been shown to be specifically up-regulated in tumor cells of the various cancer tissues of the cases analyzed (see below); however, Northern blot analyses demonstrate that these gene products are not found in normal vital organs (see <patcit id="pcit0004" dnum="JP2006302684W"><text>PCT/JP2006/302684</text></patcit>). In that immunogenic peptides derived from MPHOSPH1, and DEPDC1 may find utility in killing tumor cells expressing those antigens, these genes are of particular interest to the present inventors.</p>
<p id="p0006" num="0006">Since cytotoxic drugs, such as M-VAC, often cause severe adverse reactions, it is clear that thoughtful selection of novel target molecules on the basis of well-characterized mechanisms of action is important in the development of effective anticancer drugs having a minimized risk of negative side effects. Toward this goal, the inventors previously performed expression profile analysis on various cancers and normal human tissue, and discovered multiple genes that are specifically over-expressed<!-- EPO <DP n="4"> --> in cancer (<nplcit id="ncit0026" npl-type="s"><text>Lin YM, et al., Oncogene. 2002 Jun 13;21:4120-8</text></nplcit>.; <nplcit id="ncit0027" npl-type="s"><text>Kitahara O, et al., Cancer Res. 2001 May 1;61:3544-9</text></nplcit>.; <nplcit id="ncit0028" npl-type="s"><text>Suzuki C, et al., Cancer Res. 2003 Nov 1;63:7038-41</text></nplcit>.; <nplcit id="ncit0029" npl-type="s"><text>Ashida S, Cancer Res. 2004 Sep 1;64:5963-72</text></nplcit>.; <nplcit id="ncit0030" npl-type="s"><text>Ochi K, et al., Int J Oncol. 2004 Mar;24(3):647-55</text></nplcit>.; <nplcit id="ncit0031" npl-type="s"><text>Kaneta Y, et al., Int J Oncol. 2003 Sep;23:681-91</text></nplcit>.; <nplcit id="ncit0032" npl-type="s"><text>Obama K, Hepatology. 2005 Jun;41:1339-48</text></nplcit>.; <nplcit id="ncit0033" npl-type="s"><text>Kato T, et al., Cancer Res. 2005 Jul 1;65:5638-46</text></nplcit>.; <nplcit id="ncit0034" npl-type="s"><text>Kitahara O, et al., Neoplasia. 2002 Jul-Aug;4:295-303</text></nplcit>.; <nplcit id="ncit0035" npl-type="s"><text>Saito-Hisaminato A et al., DNA Res 2002, 9: 35-45</text></nplcit>.). Of these, MPHOSPH1 (in house No. C2093) and DEPDC1 (in house No. B5860N) were identified genes over-expressed in various cancers. In particular, MPHOSPH1 was identified as over-expressed in bladder cancer, breast cancer, cervical cancer, cholangincellular carcinoma, CML, colorectal cancer, gastric cancer, NSCLC, lymphoma, osteosarcoma, prostate cancer, renal carcinoma, soft tissue tumor. Similarly, DEPDC1 was identified as over-expressed in bladder cancer, breast cancer, cervical cancer, cholangincellular carcinoma, CML, NSCLC, lymphoma, osteosarcoma, prostate cancer, SCLC, soft tissue tumor</p>
<p id="p0007" num="0007">MPHOSPH1 was previously identified as one of the proteins specifically phosphorylated at the G2/M transition and characterized as a plus-end-directed kinesin related protein (<nplcit id="ncit0036" npl-type="s"><text>Abaza A et al., J Biol Chem 2003, 278: 27844-52</text></nplcit>.). More particularly, MPHOSPH1 has been previously documented to be a plus-end-directed molecular motor that plays a crucial role in cytokinesis, and accumulates in the midzone of the spindle during anaphase to telophase in HeLa cells (<nplcit id="ncit0037" npl-type="s"><text>Abaza A et al., J Biol Chem 2003, 278: 27844-52</text></nplcit>; <nplcit id="ncit0038" npl-type="s"><text>Kamimoto T et al., J Biol Chem 2001, 276: 37520-8</text></nplcit>). The MPHOSPH1 cDNA encodes a 1780-amino acid protein that is composed of three domains: an NH2-kinasin motor domain, a central coiled coil-stalk domain, and a C-globular tail domain. Together, this data suggests that MPHOSPH1 is an NH2-type kinesin-related protein.</p>
<p id="p0008" num="0008">As for DEPDC1, its function remains unclear. The DEP domain contained in this protein is also found in Dishevelled, Egl-10, and Pleckstrin. The DEP domain in Drosophila dishevelled plays an essential role in rescue planar polarity defects and induces JNK signaling; nevertheless, its function in Humans has not yet been clarified. However, as disclosed in <patcit id="pcit0005" dnum="JP2006302684W"><text>PCT/JP2006/302684</text></patcit>, DEPDC1 siRNAs can suppress the growth of cancer cells. These results demonstrate that DEPDC1 plays an important role in growth of most cancer cells.</p>
<heading id="h0003"><u>Summary of the Invention</u></heading>
<p id="p0009" num="0009">The invention relates to the embodiments as defined in the claims.<br/>
As noted above, MPHOSPH1 (M-phase phosphoprotein 1), and DEPDC1 (DEP domain containing 1) have been identified as up-regulated in various cancers. More particularly, the genes were identified using gene expression profiling with a genome-wide cDNA microarray. As discussed above, expression of MPHOSPH1 and DEPDC1 has been shown to be specifically up-regulated in various tumor cells, including lung<!-- EPO <DP n="5"> --> cancer and bladder cancer. As described in Table 1, MPHOSPH1 expression was shown to be validly elevated in 30 out of 31 bladder cancers, 8 out of 36 breast cancers, 18 out of 18 cervical cancers, 5 out of 17 cholangincellular carcinomas, 25 out of 31 CMLs, 6 out of 11 colorectal cancers, 6 out of 14 gastric cancers, 5 out of 5 NSCLCs, 7 out of 7 lymphomas, 6 out of 10 osteosarcomas, 7 out of 22 prostate cancers, 10 out of 18 renal carcinomas and 15 out of 21soft tissue tumors. At the same time, DEPDC1 expression was shown to be validly elevated in 23 out of 25 bladder cancers, 6 out of 13 breast cancers, 12 out of 12 cervical cancers, 6 out of 6 cholangincellular carcinomas, 3 out of 4 CMLs 2 out of 4 colorectal cancers, 6 out of 6 NSCLCs, 7 out of 7 lymphomas, 10 out of 14 osteosarcomas, 11 out of 24 prostate cancers, 14 out of 14 SCLCs and 22 out of 31 soft tissue tumors as described in Table 1.</p>
<p id="p0010" num="0010">The present disclosure is based, at least in part, on the identification of specific epitope peptides of the gene products of these genes (MPHOSPH1 and DEPDC1) which possess the ability to induce cytotoxic T lymphocytes (CTLs) specific to the corresponding molecules. As discussed in detail below, Peripheral Blood Mononuclear Cells (PBMC) of healthy donor were stimulated using HLA-A*2402 and HLA-A*0201 binding candidate peptides derived from MPHOSPH1 or DEPDC1. CTL clones and/or lines were then established with specific cytotoxicity against the HLA-A24 or HLA-A2 positive target cells pulsed with each of the candidate peptides. These results demonstrate that these peptides are HLA-A24 or HLA-A2 restricted epitope peptides that can induce potent and specific immune responses against cells expressing MPHOSPH1 or DEPDC1.</p>
<p id="p0011" num="0011">Accordingly, the present disclosure provides methods for treating or preventing a disease associated with the over-expression of MPHOSPH1 and/or DEPDC1, e.g. cancer. Such methods involves the step of administering to a subject in need thereof a MPHOSPH1 and/or DEPDC1 polypeptide of the disclosure. Administration of such peptide(s) results in the induction of anti-tumor immunity. Thus, the present disclosure provides methods for inducing anti-tumor immunity in a subject, such methods involving the step of administering to the subject a MPHOSPH1 and/or DEPDC1 polypeptide, as well as pharmaceutical compositions for treating or preventing a disease associated with the over-expression of MPHOSPH1 and/or DEPDC1, e.g cancer, that include the MPHOSPH1 and/or DEPDC1 polypeptides. Exemplary cancers include, but are not limited to, bladder cancer, breast cancer, cervical cancer, cholangincellular carcinoma, CML, colorectal cancer, gastric cancer, NSCLC, lymphoma, osteosarcoma, prostate cancer, renal carcinoma, SCLC, and soft tissue tumor.</p>
<p id="p0012" num="0012">That is, the present disclosure includes following embodiments, and any combinations thereof.<!-- EPO <DP n="6"> -->
<ol id="ol0001" compact="compact" ol-style="">
<li>[1] An isolated peptide having cytotoxic T cell inducibility, wherein said peptide derived from amino acid sequence of SEQ ID NO: 2, 4, or 6.</li>
<li>[2] An isolated peptide of less than about 15 amino acids selected from the group consisting of peptides comprising the amino acid sequences of SEQ ID NO: 7, 8 and 12, or a peptide having cytotoxic T cell inducibility, wherein said peptide comprises an amino acid sequence selected from the group consisting of SEQ ID NO: 7, 8 and 12, wherein 1, 2, or several amino acids are substituted, deleted, or added.</li>
<li>[3] The peptide having cytotoxic T cell inducibility of [2], wherein the second amino acid from the N-terminus is phenylalanine, tyrosine, methionine, or tryptophan.</li>
<li>[4] The peptide having cytotoxic T cell inducibility of [2], wherein the C-terminal amino acid is phenylalanine, leucine, isoleucine, tryptophan, or methionine.</li>
<li>[5] An isolated peptide of less than about 15 amino acids selected from the group consisting of peptides comprising the amino acid sequences of SEQ ID NO: 9, 10, 11, 192, 195, 197, 209, 225, 226, 228, 230, 240, 241, 243, 244, 253, 254 and 255, or a peptide having cytotoxic T cell inducibility, wherein said peptide comprises an amino acid sequence selected from the group consisting of SEQ ID NO: 9, 10, 11, 192, 195, 197, 209, 225, 226, 228, 230, 240, 241, 243, 244, 253, 254 and 255, wherein 1, 2, or several amino acids are substituted, deleted, or added.</li>
<li>[6] The peptide having cytotoxic T cell inducibility of [5], wherein the second amino acid from the N-terminus is leucine or methionine.</li>
<li>[7] The peptide having cytotoxic T cell inducibility of [5], wherein the C-terminal amino acid is valine or leucine.</li>
<li>[8] A vector in which the DNA encodes peptides of any one of [1] to [7].</li>
<li>[9] A pharmaceutical composition for treating or preventing a disease associated with over-expression of the genes of SEQ ID NO: 1, 3 and/or 5, said composition comprising one or more peptides of any one of [1] to [7].</li>
<li>[10] The pharmaceutical composition of [9], wherein the disease is cancer.</li>
<li>[11] The pharmaceutical composition of [10], wherein the cancer is selected from the group consisting of bladder cancer, breast cancer, cervical cancer, cholangincellular carcinoma, CML, colorectal cancer, gastric cancer, NSCLC, lymphoma, osteosarcoma, prostate cancer, renal carcinoma, SCLC and soft tissue tumor.</li>
<li>[12] An exosome that presents on its surface a complex comprising a peptide of any one of [1] to[7] and an HLA antigen.</li>
<li>[13] The exosome of [12], wherein the HLA antigen is HLA-A24.</li>
<li>[14] The exosome of [13], wherein the HLA antigen is HLA-A2402.</li>
<li>[15] The exosome of [12], wherein the HLA antigen is HLA-A2.</li>
<li>[16] The exosome of [13], wherein the HLA antigen is HLA-A0201.</li>
<li>[17] A method of inducing antigen-presenting cells having a high cytotoxic T cell inducibility<!-- EPO <DP n="7"> --> comprising the step of contacting an antigen-presenting cell with a peptide of any one of [1] to [7].</li>
<li>[18] A method of inducing cytotoxic T cells by contacting a T cell with a peptide of any one of [1] to [7].</li>
<li>[19] A method of inducing antigen-presenting cells having high cytotoxic T cell inducibility, said method comprising the step of transferring a gene comprising a polynucleotide encoding a peptide of any one of [1] to [7] to an antigen-presenting cell.</li>
<li>[20] An isolated cytotoxic T cell, which is induced by contacting a T cell with a peptide of any one of claims 1 to 7 or which is transduced with the nucleic acids encoding the TCR subunits polypeptides binding with a peptide of any one claims 1 to 7 in the context of HLA-A24 or HLA-A2.</li>
<li>[21] An antigen-presenting cell, which comprises a complex formed between an HLA antigen and a peptide of any one of [1] to [7].</li>
<li>[22] The antigen-presenting cell of [21], induced by the method of [17].</li>
<li>[23] A vaccine for inhibiting proliferation of cells expressing genes of SEQ ID NO: 1, 3 and/or 5, wherein the vaccine comprises a peptide of any one of [1] to [7] as the active ingredient.</li>
<li>[24] The vaccine of [23], wherein the cell is a cancer cell.</li>
<li>[25] The vaccine of [24], wherein the cancer is selected from the group consisting of bladder cancer, breast cancer, cervical cancer, cholangincellular carcinoma, CML, colorectal cancer, gastric cancer, NSCLC, lymphoma, osteosarcoma, prostate cancer, renal carcinoma, SCLC and soft tissue tumor.</li>
<li>[26] The vaccine of [23], formulated for administration to a subject whose HLA antigen is HLA-A24 or HLA-A2.</li>
<li>[27] A method of treating or preventing a disease associated with the over-expression of the genes of SEQ ID NO: 1, 3 and/or 5 in a subject comprising administering to said subject a vaccine comprising one or more peptide of any one of [1] to [7], an immunologically active fragment thereof, or a polynucleotide encoding said peptide or immunologically active fragment.</li>
<li>[28] The method of [27], wherein the disease is cancer.</li>
<li>[29] The method of [28], wherein the cancer is selected from the group consisting of bladder cancer, breast cancer, cervical cancer, cholangincellular carcinoma, CML, colorectal cancer, gastric cancer, NSCLC, lymphoma, osteosarcoma, prostate cancer, renal carcinoma, SCLC and soft tissue tumor.</li>
</ol></p>
<p id="p0013" num="0013">Alternatively, the present disclosure also relates to a method of inducing cytotoxic T cells comprising the step of contacting a T-cell with the antigen-presenting cell produced by the method of [19].</p>
<p id="p0014" num="0014">These and other objects and features of the disclosure will become more fully<!-- EPO <DP n="8"> --> apparent when the following detailed description is read in conjunction with the accompanying figures and examples. However, it is to be understood that both the foregoing summary and the following detailed description are of preferred embodiments, and not restrictive of the disclosure or other alternate embodiments of the disclosure.</p>
<heading id="h0004"><b>Brief Description of the Drawings</b></heading>
<p id="p0015" num="0015">
<ul id="ul0001" list-style="none" compact="compact">
<li>[<figref idref="f0001">fig.1]Figure 1A</figref> depicts the results of an IFN-gamma ELISPOT assay for the screening of epitope peptides which, in turn, demonstrate that MPHOSPH1-A24-9-278 (SEQ ID NO: 7) is a potent producer of IFN-gamma. CTLs for those peptides derived from MPHOSHP1 were generated according to the protocols described in "Materials and Methods" section of the examples below. Resulting CTLs having detectable specific CTL activity are shown. In particular, the cells in the well number #4 stimulated with MPHOSPH1-A24-9-278 showed potent IFN-gamma production to recognize peptide pulsed target cells, as compared to the control. <figref idref="f0001">Figure 1B</figref> depicts the results of the IFN-gamma ELISPOT assay for the screening of CTL clones after limiting dilution (MPHOSPH1-A24-9-278 CTL clone). The cells in the positive well were expanded and limiting dilution was performed. As the depicted results demonstrate, CTL clones having higher specific CTL activities against the peptide-pulsed target as compared to the activities against target without peptide pulse were established.</li>
<li>[<figref idref="f0002">fig.2]Figure 2A</figref> depicts the results of an IFN-gamma ELISPOT assay for the screening of epitope peptides cytotoxicity, which, in turn, demonstrate that MPHOSPH1-A24-10-278 (SEQ ID NO: 8) is a potent producer of IFN-gamma . CTLs for those peptides derived from MPHOSHP1 were generated according to the protocols described in "Materials and Methods" section of the examples below. Resulting CTLs having detectable specific CTL activity are shown. In particular, the cells in the well number #8 stimulated with MPHOSPH1-A24-10-278 showed potent IFN-gamma production as compared to the control. <figref idref="f0002">Figure 2B</figref> depicts the results of an IFN-gamma ELISPOT assay for the screening of CTL clones after limiting dilution (MPHOSPH1-A24-10-278 CTL clone). The cells in the positive well were expanded and limiting dilution was performed. As the depicted results demonstrate, CTL clones having higher specific CTL activities against the MPHOSPH1-A24-10-278-pulsed target as compared to the activities against target without peptide pulse as shown where established.</li>
<li>[<figref idref="f0003">fig.3]Figure 3A</figref> depicts the establishment of CTL clones stimulated with MPHOSPH1-A24-9-278. (SEQ ID NO: 7). This CTL clone demonstrated high specific CTL activity against target cells (A24LCL) pulsed with MPHOSPH1-A24-9-278, but<!-- EPO <DP n="9"> --> did not show significant CTL activity against the same target cells (A24LCL) pulsed with no peptides. <figref idref="f0003">Figure 3B</figref> depicts the establishment of CTL clones stimulated with MPHOSPH1-A24-10-278 (SEQ ID NO: 8). This CTL clone demonstrated high specific CTL activity against target cells (A24LCL) pulsed with MPHOSPH1-A24-10-278, whereas it did not show significant CTL activity against the same target cells (A24LCL) pulsed with no peptides. R means Responder: CTL clone. S means Stimulator: peptide-pulsed A24-LCL (1x10<sup>4</sup>/well).</li>
<li>[<figref idref="f0004">fig.4]Figure 4</figref> depicts the expression of MPHOSPH1-A24-9-278 (SEQ ID NO: 7) on the target cell surface with HLA-A24. Specific CTL activity against COS7 transfected both with the full length MPHOSPH1 gene and the HLA-A*2402 molecule was assayed using as effector cells the CTL clone raised by MPHOSPH1-A24-9-278. COS7 transfected with full length MPHOSPH1 but not HLA-A*2402 and COS7 transfected with HLA-A*2402 but not full length MPHOSPH1 were prepared as controls. The CTL clone demonstrated high specific CTL activity against COS7 transfected with both MPHOSPH1 and HLA-A24. However, it did not show significant specific CTL activity against COS7 transfected neither MPHOSPH1 nor HLA-A24. R means Responder: CTL clone. S means Stimulator: COS7 transfectant (1x10<sup>4</sup> / well).</li>
<li>[<figref idref="f0005">fig.5]Figure 5</figref> depicts the CTL activity against bladder cancer cell lines endogenously expressing MPHOSPH1. The established CTL clone induced with MPHOSPH1-A24-9-278 peptide recognized tumor cells endogenously expressing MPHOSPH1. HT1376, RT-4 and J82 cells expressed MPHOSPH1 endogenously, respectively. CTL clone showed IFN-gamma production against HT 1376 which have HLA-A*2402 genotype, but no showing response against RT-4 and J82, does not have HLA-A*2402 genotype.</li>
<li>[<figref idref="f0006">fig.6]Figure 6</figref> depicts in vivo immunogenicity analysis using MPHOSPH1-A24-9-278 peptide. IFA-conjugated peptide was injected subcutaneously into BALB/c mice on days 0 and 7. On day 14, splenocytes of vaccinated mice were harvested and used as responder cells, and 1x10<sup>4</sup> RLmalel cells pulsed MPHOSPH1-A24-9-278 peptide were used as stimulator cells for IFN-gamma ELISPOT assay. Spot forming counts (SFC) were indicated in cases of each mice; five mice (Anil∼Ani5) were vaccinated epitope peptide and three mice (negal~nega3) were injected Mock IFA emulsion as a negative control.</li>
<li>[<figref idref="f0007">fig.7]Figure 7</figref> depicts the results of an IFN-gamma ELISPOT assay for the screening of epitope peptides, which, in turn, demonstrate that MPHOSPH1-A2-9-282 (SEQ ID NO: 9), MPHOSPH1-A2-9-638 (SEQ ID NO: 10) and MPHOSPH1-A2-10-1714 (SEQ ID NO: 11) possess potent IFN-gamma production activity. CTLs for those peptides derived from MPHOSHP1 were generated according to the protocols described in<!-- EPO <DP n="10"> --> "Materials and Methods" section of the examples set forth below. Resulting CTLs having detectable specific CTL activity are shown. In particular, <figref idref="f0007">Figure 7A</figref> demonstrates that the cells in the well number #1 and #5, stimulated with MPHOSPH1-A2-9-282, showed potent IFN-gamma production sufficient to recognize peptide pulsed target cells, as compared to the control. <figref idref="f0007">Figure 7B</figref> demonstrates that the cells in the well number #8 stimulated with MPHOSPH1-A2-9-638 showed potent IFN-gamma production sufficient to recognize peptide pulsed target cells, as compared to the control. <figref idref="f0007">Figure 7C</figref> demonstrates that the cells in the well number #4 stimulated with MPHOSPH1-A2-10-1714 showed potent IFN-gamma production to recognize peptide pulsed target cells, as compared to the control.</li>
<li>[<figref idref="f0008">fig.8]Figure 8</figref> depicts the establishment for CTL lines stimulated with MPHOSPH1-A02-9-282, (SEQ ID NO: 9) MPHOSPH1-A02-9-638 (SEQ ID NO: 10) and MPHOSPH1-AU2-10-1714 (SEQ ID NO: 11). The cells in the positive well were expanded, and, as the depicted results demonstrate, CTL lines having higher specific CTL activities against the MPHOSPH1-A02-9-282-pulsed target (A), MPHOSPH1-A02-9-638-pulsed target (B) or MPHOSPH1-A02-10-1714-pulsed target (C) compared to the activities against target without peptide pulse were established.R means Responder: CTL lines. S means Stimulator: peptide-pulsed T2 (1x10<sup>4</sup>/well).</li>
<li>[<figref idref="f0009">fig.9]Figure 9A</figref> depicts the results of an IFN-gamma ELISPOT assay for the screening of CTL clones after limiting dilution (MPHOSPH1-A2-9-282 CTL clone). The cells in the positive well were expanded and limiting dilution was performed. As the depicted results demonstrate CTL clones having higher specific CTL activities against the MPHOSPH1-A2-9-282 (SEQ ID NO: 9) pulsed target as compared to the activities against target without peptide pulse were established. <figref idref="f0009">Figure 9B</figref> depicts the establishment of CTL clones stimulated with MPHOSPH1-A02-9-282. The CTL clone demonstrated high specific CTL activity against target cells (T2) pulsed with MPHOSPH1-A2-9-282, but did not possess significant CTL activity against the same target cells (T2) pulsed with no peptides. R means Responder: CTL clone. S means Stimulator: peptide-pulsed T2 (1x10<sup>4</sup>/well).</li>
<li>[<figref idref="f0010">fig.10]Figure 10A</figref> depicts the results of an IFN-gamma ELISPOT assay for the screening of epitope peptides, which, in turn, demonstrate that DEPDC1-A24-9-294 (SEQ ID NO: 12) is a potent producer of IFN-gamma. CTLs for those peptides derived from DEPDC1 were generated according to the protocols described in "Materials and Methods" section of the examples set forth below. Resulting CTLs showing detectable specific CTL activity are shown. The cells in the well number #10 stimulated with DEPDC1-A24-9-294 showed potent IFN-gamma production to recognize peptide pulsed target cells, compared with the control. <figref idref="f0010">Figure 10B</figref> depicts the results of an IFN-gamma ELISPOT assay for the screening of CTL clones after<!-- EPO <DP n="11"> --> limiting dilution (DEPDC1-A24-9-294 CTL clone). The cells in the positive well were expanded and limiting dilution performed. As the depicted results demonstrate, CTL clones having higher specific CTL activities against the DEPDC1 -A24-9-294-pulsed target compared to the activities against target without peptide pulse were established.</li>
<li>[<figref idref="f0011">fig.11]Figure 11</figref> depicts the establishment for CTL clones stimulated with DEPDC1-A24-9-294 (SEQ ID NO: 12). The CTL clone showed high specific CTL activity against target cells (A24LCL) pulsed with DEPDC1-A24-9-294, whereas it did not show significant CTL activity against the same target cells (A24LCL) pulsed with no peptides. R means Responder: DEPDC-A24-9-294 CTL clone. S means Simulator: peptide-pulsed A24-LCL (1x10<sup>4</sup>/well).</li>
<li>[<figref idref="f0012">fig.12]Figure 12</figref> depicts the expression of DEPDC1-A24-9-294 (SEQ ID NO: 12) on the target cell surface with HLA-A24. Specific CTL activity against COS7 transfected with both the full length DEPDC1 gene and the HLA-A*2402 molecule was assayed using as effector cells the CTL clone raised by DEPDC1-A24-9-294. COS7 transfected with full length DEPDC1 but not HLA-A*2402 and COS7 transfected HLA-A*2402 but not full length DEPDC1 were prepared as controls. The CTL clone established demonstrated high specific CTL activity against COS7 transfected with both DEPDC1 and HLA-A24. However, it did not show significant specific CTL activity against COS7 transfected with neither DEPDC1 nor HLA-A24. R means Responder: DEPA24-9-294 CTL clone. S means Stimulator: COS7 transfectant (1x10<sup>4</sup>/well).</li>
<li>[<figref idref="f0013">fig.13]Figure 13</figref> depicts the CTL activity against bladder cancer cell lines endogenously expressing DEPDC 1. The established CTL clone induced with DEPDC1-A24-9-294 peptide recognized tumor cells endogenously expressing DEPDC 1. HT 1376, RT-4 and J82 cells expressed DEPDC1 endogenously, respectively. CTL clone showed IFN-gamma production against HT1376 which have HLA-A*2402 genotype, but no showing response against RT-4 and J82, does not have HLA-A*2402 genotype.</li>
<li>[<figref idref="f0014">fig.14]Figure 14</figref> depicts the in vivo immunogenicity analysis using DEPDC1-A24-9-294 peptide. IFA-conjugated peptide was injected subcutaneously into BALB/c mice on days 0 and 7. On day 14, splenocytes of vaccinated mice were harvested and used as responder cells, and 1x10<sup>4</sup> RLmale1 cells pulsed DEPDC1-A24-9-294 peptide were used as stimulator cells for IFN-gamma ELISPOT assay. Spot forming counts (SFC) were indicated in cases of each mice; five mice (Ani1∼Ani5) were vaccinated epitope peptide and two mice (nega1 and nega2) were injected Mock IFA emulsion as a negative control.</li>
<li>[<figref idref="f0015">fig.15]Figure 15</figref> depicts potent IFN-gamma production of DEPDC1-A02-10-644, - 10-575, -10-506, -10-765, -10-395, -10-224, -9-297, -10-296 and -10-302 by IFN-gamma ELISPOT assay for the screening of epitope peptides. CTLs for those peptides<!-- EPO <DP n="12"> --> derived from DEPDC1 were generated in the way described in "Materials and Methods". The cells in the well number #4 and #7 stimulated with DEPDC1-A02-10-644, #2 with DEPDC1-A02-10-575, #7 with DEPDC1-A02-10-506, #1 with DEPDC1-A02-10-765 and #1 with DEPDC1-A02-10-395, #1 and #2 with DEPDC1-A02-10-224, #4 with DEPDC1-A02-9-297, #3 and #4 with DEPDC1-A02-10-296 and #2, #3, #5 and #7 with DEPDC1-A02-10-302 showed potent IFN-gamma production compared with the control.</li>
<li>[<figref idref="f0016">fig.16]Figure 16</figref> depicts IFN-gamma production of CTL line generated with DEPDC1-A02-10-296 peptide. The established CTL lines raised by DEPDC1-A02-10-296 peptide have potent IFN-gamma production activity. It was shown IFN-gamma production against peptide-pulsed target cells, but not shown that against target cells without peptide pulse. Target cells were used T2 cells, expressed HLA-A2 molecule at cell surface.</li>
<li>[fig.l7]<figref idref="f0017">Figure 17</figref> depicts CTL activity against targets endogenously expressing DEPDC1 and HLA-A2 molecule. It was shown in upper panel that the established CTL line generated with DEPDC1-A02-10-296 peptide possessed IFN-gamma production activity against target cells which endogenously expressed DEPDC1V2 and HLA-A2. The case of using DEPDC1-A02-10-296 peptide was shown in lower panel. The target cells expressing only DEPDC1V2 and expressing only HLA-A2 with treatment of DEPDC1V1-9-674 or DEP-9-462 peptide pulse were prepared as the negative control. The target cells were prepared from HEK293 transfectant which stable expressed HLA-A2 or mock.</li>
<li>[<figref idref="f0018">fig.18]Figure 18</figref> depicts antigen expression in Case 2. In Case 2, both MPHOSPH1 and DEPDC1 were expressed strongly. Therefore, two kinds of epitope peptides derived from MPHOSPH1 and DEPDC1 have been vaccinated.</li>
<li>[<figref idref="f0019">fig.19]Figure 19</figref> depicts the clinical evaluation for local recurrence of bladder cancer in Case 2. Case 2 were evaluated SD in accordance with RECIST criteria.</li>
<li>[<figref idref="f0020">fig.20]Figure 20</figref> depicts antigen expression in Case 3. In Case 3, DEPDC1 was expressed strongly. Therefore, we have vaccinated the epitope peptide derived from DEPDC1 alone.</li>
<li>[<figref idref="f0021">fig.21]Figure 21</figref> depicts clinical evaluation for right lobe of metastatic lung in Case 3. The progression rate was decreased after vaccination. Especially, the size of the tumor was decreased after 3rd courses.</li>
<li>[<figref idref="f0022">fig.22]Figure 22</figref> depicts clinical evaluation for left lobe of metastatic lung in Case 3. The progression rate was decreased after vaccination. Especially, the size of the tumor was decreased after 3rd courses.</li>
<li>[<figref idref="f0023">fig.23]Figure 23</figref> depicts the Anti-tumor effect in Case 3. The progression rate of metastatic tumor was decreased after vaccination.<!-- EPO <DP n="13"> --></li>
<li>[<figref idref="f0024">fig.24]Figure 24</figref> depicts specific CTL response in Case 3. Specific CTL response was strongly shown after vaccination.</li>
<li>[<figref idref="f0025">fig.25]Figure 25</figref> depicts antigen expression in Case 4. In Case 4, MPHOSPH1 and DEPDC1 were expressed. Therefore, two kinds of epitope peptides derived from MPHOSPH1 and DEPDC1 have been vaccinated.</li>
<li>[<figref idref="f0026">fig.26]Figure 26</figref> depicts the clinical evaluation for local recurrence of bladder cancer in Case 4. The size of the tumor was reduced 20% in accordance with RECIST criteria after 1st course vaccination.</li>
</ul></p>
<heading id="h0005"><u>Detailed Description of the Invention</u></heading>
<p id="p0016" num="0016">The words "a", "an", and "the" as used herein mean "at least one" unless otherwise specifically indicated.</p>
<p id="p0017" num="0017">Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this disclosure belongs.</p>
<p id="p0018" num="0018">Identification of new TAAs, particularly those that induce potent and specific anti-tumor immune responses, warrants further development of the clinical application of the peptide vaccination strategy in various types of cancer (<nplcit id="ncit0039" npl-type="s"><text>Boon T et al., (1996) J Exp Med 183: 725-9</text></nplcit>.; <nplcit id="ncit0040" npl-type="s"><text>van der Bruggen P et al., (1991) Science 254: 1643-7</text></nplcit>.; <nplcit id="ncit0041" npl-type="s"><text>Brichard V et al., (1993) J Exp Med 178: 489-95</text></nplcit>.; <nplcit id="ncit0042" npl-type="s"><text>Kawakami Y et al., (1994) J Exp Med 180: 347-52</text></nplcit>.; <nplcit id="ncit0043" npl-type="s"><text>Shichijo S et al., (1998) J Exp Med 187:277-88</text></nplcit>.; <nplcit id="ncit0044" npl-type="s"><text>Chen YT et al., (1997) Proc.Natl.Acd. Sci.USA, 94: 1914-8</text></nplcit>.; <nplcit id="ncit0045" npl-type="s"><text>Harris CC, (1996) J Natl Cancer Inst 88:1442-55</text></nplcit>.; <nplcit id="ncit0046" npl-type="s"><text>Butterfield LH et al., (1999) Cancer Res 59:3134-42</text></nplcit>.; <nplcit id="ncit0047" npl-type="s"><text>Vissers JL et al., (1999) Cancer Res 59: 5554-9</text></nplcit>.; <nplcit id="ncit0048" npl-type="s"><text>van der Burg SH et al., (1996) J. Immunol 156:3308-14</text></nplcit>.; <nplcit id="ncit0049" npl-type="s"><text>Tanaka F et al., (1997) Cancer Res 57:4465-8</text></nplcit>.; <nplcit id="ncit0050" npl-type="s"><text>Fujie T et al., (1999) Int J Cancer 80:169-72</text></nplcit>.; <nplcit id="ncit0051" npl-type="s"><text>Kikuchi M et al., (1999) Int J Cancer 81 : 459-66</text></nplcit>.; <nplcit id="ncit0052" npl-type="s"><text>Oiso M et al., (1999) Int J Cancer 81:387-94</text></nplcit>.). As noted above, MPHOSPH1 (M-phase phosphoprotein 1; GenBank Accession No. NM_016195; SEQ ID Nos.1, 2) and DEPDC1 (DEP domain containing 1; GenBank Accession No. BM683578), more particularly its two variants, DEPDC1V1 (SEQ ID Nos.3, 4) and DEPDC1V2 (SEQ ID No. 5, 6), were previously identified using cDNA microarray technologies as over-expressed in various cancers. MPHOSPH1 was previously identified as one of the proteins specifically phosphorylated at the G2/M transition, and characterized as a plus-end-directed kinesin related protein (<nplcit id="ncit0053" npl-type="s"><text>Abaza A et al., J Biol Chem 2003, 278: 27844-52</text></nplcit>.). More particularly, MPHOSPH1 was previously documented to be plus-end-directed molecular motor that plays a crucial role in cytokinesis, and accumulates in the midzone of the spindle during anaphase to telophase in HeLa cells (<nplcit id="ncit0054" npl-type="s"><text>Abaza A et al., J Biol Chem 2003, 278: 27844-52</text></nplcit>; <nplcit id="ncit0055" npl-type="s"><text>Kamimoto T et al., J Biol Chem 2001, 276: 37520-8</text></nplcit>.).The MPHOSPH1 DNA encodes a 1780-amino acid protein that is<!-- EPO <DP n="14"> --> composed of three domains: an NH2-kinasin motor domain, a central coiled coil-stalk domain, and a C-globular tail domain. These data suggest that MPHOSPH1 is an NH2-type kinesin-related protein.</p>
<p id="p0019" num="0019">The function of DEPDC1 protein remains unclear. The DEP domain included this protein is found in Dishevelled, Egl-10, and Pleckstrin. In particular, the DEP domain in Drosophila dishevelled is essential to rescue planar polarity defects and induces JNK signaling; nevertheless, its function in Human has not yet been clarified. However, as disclosed in <patcit id="pcit0006" dnum="JP2006302684W"><text>PCT/JP2006/302684</text></patcit>, DEPDC1 (in house No. B5860N) has two different transcriptional variants consisting of 12 and 11 exons, corresponding to DEPDC1 V1 and V2, respectively. Alternative variations in exon 8 of V1 were noted, and the other remaining exons were found to be common to both variants. V2 variant has no exon 8 of the V1, but generates the same stop codon within last exon. The full-length cDNA sequences of the B5860NV1 and B5860NV2 variants consist of 5318 and 4466 nucleotides, respectively. The ORF of these variants start at within each exon 1. Eventually, V1 and V2 transcripts encode 811 and 527 amino acids, respectively. siRNAs suppressed the growth of cancer cells. These results demonstrate that DEPDC1 plays important roles in growth of most cancer cells.</p>
<p id="p0020" num="0020">As disclosed in <patcit id="pcit0007" dnum="JP2006302684W"><text>PCT/JP2006/302684</text></patcit>, MPHOSPH1 and DEPDC1 are over-expressed in bladder cancer but show minimal expression in normal tissues. In addition, these genes were found to have a significant function related to cell proliferation.</p>
<p id="p0021" num="0021">In the present disclosure, peptides derived from MPHOSPH1 or DEPDC1 are shown to be TAA epitopes restricted by HLA-A24 and HLA-A2, an HLA allele commonly found in the Japanese and Caucasian populations. Specifically, using their binding affinities to HLA-A24 and HLA-A2, candidates of HLA-A24 and HLA-A2 binding peptides derived from MPHOSPH1 or DEPDC1 were identified. After the in vitro stimulation of T-cells by dendritic cells (DCs) loaded with these peptides, CTLs were successfully established using MPHOSPH1-A24-9-278 (IYNEYIYDL (SEQ ID NO: 7)), MPHOSPH 1-A24-10-278 (IYNEYIYDLF (SEQ ID NO: 8)), MPHOSPH1-A2-9-282 (YIYDLFVPV (SEQ ID NO: 9)), MPHOSPH1-A2-9-638 (RLAIFKDLV (SEQ ID NO: 10)), MPHOSPH1-A2-10-1714 (TMSSSKLSNV (SEQ ID NO: 11)), DEPDC1-A24-9-294 (EYYELFVNI (SEQ ID NO: 12)), DEPDC1-A02-10-644 (SLMIHTFSRC (SEQ ID NO: 240)), DEPDC1-A02-10-575 (SLLPASSMLT (SEQ ID NO: 241)), DEPDC1-A02-10-506 (QLCRSQSLLL (SEQ ID NO: 243)), DEPDC1-A02-10-765 (KQFQKEYPLI (SEQ ID NO: 244)), DEPDC1-A02-10-395 (IMGGSCHNLI (SEQ ID NO: 249), DEPDC1-A02-10-224 (NMANTSKRGV (SEQ ID NO: 253)), DEPDC1- A02-9-297 (ELFVNILGL (SEQ ID NO: 226)), DEPDC1-A02-10-296 (YELFVNILGL (SEQ ID NO: 254)). DEPDC1-A02-10-301 (NILGLLQPHL (SEQ ID NO: 255)), DEPDC1-A2-9-589<!-- EPO <DP n="15"> --> (LLQPHLERV (SEQ ID NO: 192)), DEPDC1-A2-9-619 (LLMRMISRM (SEQ ID NO: 195)), DEPDC 1-A2-9-290 (LLTFEYYEL (SEQ ID NO: 197)), DEPDC1-A2-9-563 (RLCKSTIEL (SEQ ID NO: 209)), DEPDC1-A2-9-653 (CVLCCAEEV (SEQ ID NO: 225)), DEPDC1-A2-10-674 (FLMDHHQEIL (SEQ ID NO: 228)) and DEPDC1-A2-10-302 (ILVVCGYITV (SEQ ID NO: 230)). These CTLs demonstrated potent cytotoxic activity against the peptide-pulsed A24LCL and T2 cells. Furthermore, CTL clones derived from these cells also demonstrated specific cytotoxicity against HLA-A24 or HLA-A2 positive cells expressing MPHOSPH1 or DEPDC1, respectively.. However, these CTL clones did not express cytotoxic activity against cells having expression of only one of peptides, including HLA-A24, HLA-A2, MPHOSPH1 and DEPDC 1. Together these results suggest the utility of MPHOSPH I and DEPDC1 as TAAs for cancer cells and that MPHOSPH1-A24-9-278 (IYNEYIYDL (SEQ ID NO: 7)), MPHOSPH1-A24-10-278 (IYNEYIYDLF (SEQ ID NO: 8)), MPHOSPH1-A2-9-282 (YIYDLFVPV (SEQ ID NO: 9)), MPHOSPH1-A2-9-638 (RLAIFKDLV (SEQ ID NO: 10)), MPHOSPH1-A2-10-1714 (TMSSSKLSNV (SEQ ID NO: 11)), DEPDC1-A24-9-294 (EYYELFVNI (SEQ ID NO: 12)), DEPDC1-A02-10-644 (SLMIHTFSRC (SEQ ID NO: 240)), DEPDC1-A02-10-575 (SLLPASSMLT(SEQ ID NO: 241)), DEPDC1-A02- 10-506 (QLCRSQSLLL (SEQ ID NO: 243)), DEPDC1-A02-10-765 (KQFQKEYPLI (SEQ ID NO: 244)), DEPDC1-A02-10-395 (IMGGSCHNLI (SEQ ID NO: 249), DEPDC1-A02-10-224 (NMANTSKRGV(SEQ ID NO: 253)), DEPDC1- A02-9-297 (ELFVNILGL (SEQ ID NO: 226)), DEPDC1-A02-10-296 (YELFVNILGL (SEQ ID NO: 254)), DEPDC1-A02-10-301 (NILGLLQPHL (SEQ ID NO: 255)), DEPDC1-A2-9-589 (LLQPHLERV (SEQ ID NO: 192)), DEPDC1-A2-9-619 (LLMRMISRM (SEQ ID NO: 195)), DEPDC1-A2-9-290 (LLTFEYYEL (SEQ ID NO: 197)), DEPDC1-A2-9-563 (RLCKSTIEL (SEQ ID NO: 209)), DEPDC1-A2-9-653 (CVLCCAEEV (SEQ ID NO: 225)), DEPDC1-A2-10-674 (FLMDHHQEIL (SEQ ID NO: 228)) and DEPDC1-A2-10-302 (ILVVCGYITV (SEQ ID NO: 230)) are epitope peptides of each TAA restricted by HLA-A24 or HLA-A2. Since these antigens are over-expressed in most cancers and are associated with tumor cell proliferation, they find utility as immunotherapeutic targets against cancers. Exemplary cancers include, but are not limited to, bladder cancer, breast cancer, cervical cancer, cholangincellular carcinoma, CML, colorectal cancer, gastric cancer, NSCLC, lymphoma, osteosarcoma, prostate cancer, renal carcinoma, SCLC, soft tissue tumor.</p>
<p id="p0022" num="0022">Accordingly, the present disclosure further provides methods of treating or preventing a disease associated with the over-expression of MPHOSPH1 and/or DEPDC 1, e.g. cancers, in a subject, such methods including the steps of administering to a subject in<!-- EPO <DP n="16"> --> need thereof an immunogenic peptide of less than about 40 amino acids, often less than about 20 amino acids, usually less than about 15 amino acids and having the amino acid sequence of SEQ ID NOs: 7, 8, 9, 10, 11, 12, 192, 195, 197, 209, 225, 226 228, 230, 240, 241, 243, 244, 249, 253, 254 or 255. Alternatively, the immunogenic peptide may be composed of a sequence of SEQ ID NOs: 7, 8, 9, 10, 11, 12, 192, 195, 197, 209, 225, 226 228, 230, 240, 241, 243, 244, 249, 253, 254 or 255 in which 1, 2, or several (e.g., up to 5) amino acids are substituted, deleted or added, provided the resulting variant peptide retains the immunogenic activity (i.e., the ability to induce CTLs specific to cells expressing MPHOSPH1 and/or DEPDC1, e.g. cancers). The number of residues to be substituted, deleted, or added is generally 5 amino acids or less, preferably 4 amino acids or less, more preferably 3 amino acids or less, even more preferably one or two amino acids. The cancers contemplated include, but are not limited to, bladder cancer, breast cancer, cervical cancer, cholangincellular carcinoma, CML, colorectal cancer, gastric cancer, NSCLC, lymphoma, osteosarcoma, prostate cancer, renal carcinoma, SCLC, soft tissue tumor.</p>
<p id="p0023" num="0023">Variant peptides (i.e., peptides having an amino acid sequence modified by substituting, deleting, or adding one, two or several amino acid residues to an original amino acid sequence) are known to retain the original biological activity (<nplcit id="ncit0056" npl-type="s"><text>Mark DF et al., (1984) Proc Natl Acad Sci USA 81: 5662-6</text></nplcit>.; <nplcit id="ncit0057" npl-type="s"><text>Zoller MJ and Smith M, (1982) Nucleic Acids Res 10:6487-500</text></nplcit>.; <nplcit id="ncit0058" npl-type="s"><text>Dalbadie-McFarland G et al., (1982) Proc Natl Acad Sci USA 79: 6409-13</text></nplcit>.). In the context of the present disclosure, it is preferable that the amino acid modification results in conservation of the properties of the original amino acid side-chain (a process known as conservative amino acid substitution). Examples of properties of amino acid side chains include hydrophobic amino acids (A, I, L, M, F, P, W, Y, V), hydrophilic amino acids (R, D, N, C, E, Q, G, H, K, S, T), and side chains having the following functional groups or characteristics in common: an aliphatic side-chain (G, A, V, L, I, P); a hydroxyl group containing side-chain (S, T, Y); a sulfur atom containing side-chain (C, M); a carboxylic acid and amide containing side-chain (D, N, E, Q); a base containing side-chain (R, K, H); and an aromatic containing side-chain (H, F, Y, W). Note, the parenthetic letters indicate the one-letter codes of amino acids.</p>
<p id="p0024" num="0024">In preferred embodiments, the immunogenic peptide is a nonapeptide (9-mer) or a decapeptide (10-mer).</p>
<p id="p0025" num="0025">The present disclosure further provides a method of inducing anti-tumor immunity for a disease associated with the over-expression of MPHOSPH1 and/or DEPDC1, e.g. cancers, in a subject, such a method including the steps of administering to a subject in need thereof an immunogenic peptide of the present disclosure, namely one having the amino acid sequence of S SEQ ID NOs: 7, 8, 9, 10, 11, 12, 192, 195, 197, 209, 225,<!-- EPO <DP n="17"> --> 226 228, 230, 240, 241, 243, 244, 249, 253, 254 or 255 or a variant thereof (i.e., including 1, 2, or several amino acid substitutions, deletions, or additions). The cancers contemplated include, but are not limited to, bladder cancer, breast cancer, cervical cancer, cholangincellular carcinoma, CML, colorectal cancer, gastric cancer, NSCLC, lymphoma, osteosarcoma, prostate cancer, renal carcinoma, SCLC, soft tissue tumor.</p>
<p id="p0026" num="0026">In the context of the present disclosure, the subject is preferably a mammal. Exemplary mammals include, but are not limited to, e.g., a human, non-human primate, mouse, rat, dog, cat, horse, or cow.</p>
<p id="p0027" num="0027">In the present disclosure, the peptide can be administered to a subject via an in vivo or ex vivo protocol. Furthermore, the present disclosure also provides use of nonapeptide or decapeptide selected from peptides having the amino acid sequence of SEQ ID NOs: 7, 8, 9, 10, 11, 12, 192, 195, 197, 209, 225, 226 228, 230, 240, 241, 243, 244, 249, 253, 254 and 255 (and variants thereof) for manufacturing an immunogenic composition for treating or preventing a disease associated with the over-expression of MPHOSPH1 and/or DEPDC1, e.g. cancers. The cancers contemplated include, but are not limited to, bladder cancer, breast cancer, cervical cancer, cholangincellular carcinorna, CML, colorectal cancer, gastric cancer, NSCLC, lymphoma, osteosarcoma, prostate cancer, renal carcinoma, SCLC, soft tissue tumor.</p>
<p id="p0028" num="0028">Homology analyses of MPHOSPH1-A24-9-278 (IYNEYIYDL (SEQ ID NO: 7)), MPHOSPH1-A24-10-278 (IYNEYIYDLF (SEQ ID NO: 8)), MPHOSPH1-A2-9-282 (YIYDLFVPV (SEQ ID NO: 9)), MPHOSPH1-A2-9-638 (RLAIFKDLV (SEQ ID NO: 10)), MPHOSPH1-A2-10-I714 (TMSSSKLSNV (SEQ ID NO: 11)), DEPDC1-A24-9-294 (EYYELFVNI (SEQ ID NO: 12)), DEPDC1-A2-9-589 (LLQPHLERV (SEQ ID NO: 192)), DEPDC1-A2-9-619 (LLMRMISRM (SEQ ID NO: 195)), DEPDC1-A2-9-290 (LLTFEYYEL (SEQ ID NO: 197)), DEPDC1-A2-9-563 (RLCKSTIEL (SEQ ID NO: 209)), DEPDC1-A2-9-653 (CVLCCAEEV (SEQ ID NO: 225)), DEPDC1-A2-10-674 (FLMDHHQEIL (SEQ ID NO: 228)), DEPDC1-A2-10-302 (ILVVCGYITV (SEQ ID NO: 230)) DEPDC1-A02-10-644 (SLMIhTFSRC (SEQ ID NO: 240)), DEPDC1-A02-10-575 (SLLPASSMLT(SEQ ID NO: 241)), DEPDC1-A02-10-506 (QLCRSQSLLL (SEQ ID NO: 243)), DEPDC1-A02-10-765 (KQFQKEYPLI (SEQ ID NO: 244)), DEPDC1-A02-10-395 (IMGGSCHNLI (SEQ ID NO: 249), DEPDC1-A02-10-224 (NMANTSKRGV (SEQ ID NO: 253)), DEPDC1- A02-9-297 (ELFVNILGL (SEQ ID NO: 226)), DEPDC1-A02-10-296(YELFVNILGL (SEQ ID NO: 254)) and DEPDC1-A02-10-301(NIL-GLLQPHL (SEQ ID NO: 255)) demonstrate that they do not have significant homology with the peptides derived from any known human gene products. Accordingly, the possibility of unknown or undesirable immune responses with immunotherapy against these molecules is significantly reduced.<!-- EPO <DP n="18"> --></p>
<p id="p0029" num="0029">Regarding HLA antigens, the data presented here demonstrate that the uses of A-24 type or A-2 type antigens (which are said to be highly expressed among the Japanese) are favorable for obtaining effective results. The uses of subtypes such as A-2402 and A-0201 are even more preferable. Typically, in the clinic, the type of HLA antigen of the patient requiring treatment is investigated in advance, which, in turn, enables the selection of appropriate peptides having high levels of binding affinity to the patient antigen, or having cytotoxic T cell (CTL) inducibility by antigen presentation. Furthermore, in order to obtain peptides having high binding affinity and CTL inducibility, substitution, deletion, or addition of 1, 2, or several amino acids may be performed based on the amino acid sequence of the naturally occurring MPHOSPH1 and DEPDC1 partial peptide. Herein, the term "several" means refers to 5 or less, more preferably 3 or less. Furthermore, in addition to peptides that are naturally displayed, since the regularity of the sequences of peptides displayed by binding to HLA antigens is already known (<nplcit id="ncit0059" npl-type="s"><text>Kubo RT, et al., (1994) J. Immunol., 152, 3913-24</text></nplcit>.; <nplcit id="ncit0060" npl-type="s"><text>Rammensee HG, et al., (1995) Immunogenetics. 41:178-228</text></nplcit>.; <nplcit id="ncit0061" npl-type="s"><text>Kondo A, et al., (1995) J. Immunol. 155:4307-12</text></nplcit>.), modifications based on such regularity can be performed on the immunogenic peptides of the disclosure. For example, peptides possessing high HLA-24 binding affinity in which the second amino acid from the N terminus substituted with phenylalanine, tyrosine, methionine, or tryptophan may be favorably used. Likewise, peptides whose C-terminal amino acid is substituted with phenylalanine, leucine, isoleucine, tryptophan, or methionine may also be used favorably. On the other hand, peptides possessing high HLA-A2 binding affinity having their second amino acid from the N terminus substituted with leucine or methionine, and peptides whose C-terminal amino acid is substituted with valine or leucine may be used favorably. Furthermore, 1 to 2 amino acids may be added to the N terminus and/or C terminus of the peptide.</p>
<p id="p0030" num="0030">However, when the peptide sequence is identical to a portion of the amino acid sequence of an endogenous or exogenous protein having a different function, side effects such as autoimmune disorders or allergic symptoms against specific substances may be induced. Therefore, it is preferable to avoid the situation wherein the immunogenic sequence matches the amino acid sequence of a known protein. This situation may be avoided by performing a homology search using available databases. If homology searches confirm that peptides in which 1, 2 or several different amino acids do not exist in nature, then the danger that modifications of the above-mentioned amino acid sequence that, for example, increase the binding affinity with HLA antigens, and/or increase the CTL inducibility can be avoided.</p>
<p id="p0031" num="0031">Although peptides having high binding affinity to the HLA antigens as described above are expected to be highly effective as cancer vaccines, the candidate peptides,<!-- EPO <DP n="19"> --> which are selected according to the presence of high binding affinity as an indicator, must be examined for the actual presence of CTL inducibility. CTL inducibility may be routinely confirmed by inducing antigen-presenting cells carrying human MHC antigens (for example, B-lymphocytes, macrophages, and dendritic cells), or more specifically dendritic cells derived from human peripheral blood mononuclear leukocytes, and, after stimulation with the peptide of interest, mixing with CD8-positive cells and measuring the cytotoxic activity against the target cells. As the reaction system, transgenic animals produced to express a human HLA antigen (for example, those described in <nplcit id="ncit0062" npl-type="s"><text>BenMohamed L, et al., (2000) Hum. Immunol.: 61(8):764-79</text></nplcit> Related Articles, Books, Linkout.) may be used. For example, the target cells can be radiolabeled with <sup>51</sup>Cr and such, and cytotoxic activity can be calculated from radioactivity released from the target cells. Alternatively, it can be examined by measuring IFN-gamma produced and released by CTL in the presence of antigen-presenting cells that carry immobilized peptides, and visualizing the inhibition zone on the media using anti-IFN-gamma monoclonal antibodies.</p>
<p id="p0032" num="0032">As a result of examining the CTL inducibility of peptides as described above, it was discovered that those peptides having high binding affinity to an HLA antigen did not necessarily have high inducibility. However, nonapeptides or decapeptides selected from the group of peptides having the amino acid sequences indicated by IYNEYIYDL. (SEQ ID NO: 7), IYNEYIYDLF (SEQ ID NO: 8), YIYDLFVPV (SEQ ID NO: 9), RLAIFKDLV (SEQ ID NO: 10). TMSSSKLSNV (SEQ ID NO: 11), EYYELFVNI (SEQ ID NO: 12), LLQPHLERV (SEQ ID NO: 192), LLMRMISRM (SEQ ID NO: 195). LLTFEYYEL (SEQ ID NO: 197), RLCKSTIEL (SEQ ID NO: 209), CVLCCAEEV (SEQ ID NO: 225), FLMDHHQEIL (SEQ ID NO: 228), ILVVCGYITV (SEQ ID NO: 230) DEPDCI-A02-10-644 (SLMIHTFSRC (SEQ ID NO: 240)), DEPDC1-A02-10-575 (SLLPASSMLT (SEQ ID NO: 241)), DEPDC1-A02-10-506 (QLCRSQSLLL (SEQ ID NO: 243)), DEPDC1-A02-10-765 (KQFQKEYPLI (SEQ ID NO: 244)), DEPDC1- A02-10-395 (IMGGSCHNLI (SEQ ID NO: 249), DEPDC1-A02-10-224(NMANTSKRGV (SEQ ID NO: 253)), DEPDC1- A02-9-297 (ELFVNILGL (SEQ ID NO: 226)), DEPDC1-A02-10-296 (YELFVNILGL (SEQ ID NO: 254)) and DEPDC1-A02-10-301 (NILGLLQPHL (SEQ ID NO: 255)) showed particularly high CTL inducibility.</p>
<p id="p0033" num="0033">As noted above, the present disclosure provides peptides having cytotoxic T cell indu-[0034] As noted above, the present disclosure provides peptides having cytotoxic T cell inducibility, namely those having the amino acid sequence of SEQ ID NOs: 7, 8, 9, 10, 11, 12, 192, 195, 197, 209, 225, 226 228, 230, 240, 241, 243, 244, 249, 253. 254 or 255 or a variant thereof (i.e., those in which 1, 2, or several amino acids are substituted, deleted, or added). It is preferable that the amino acid sequences composed of 9 or 10 amino acids indicated in SEQ ID NOs: 7, 8, 9, 10, 11, 12, 192, 195, 197, 209, 225, 226<!-- EPO <DP n="20"> --> 228, 230, 240, 241, 243, 244, 249, 253, 254 or 255 or a variant thereof do not match an amino acid sequence associated with another endogenous protein. In particular, amino acid substitution to leucine or methionine at the second amino acid from the N terminus, amino acid substitution to valine or leucine at the C-terminal amino acid, and amino acid addition of 1 to 2 amino acids at the N terminus and/or C terminus are examples of preferred variants. One of skill in the art will recognize that in addition to amino acid substitutions and additions, immunologically active fragments of the peptides may also be used in the methods of the disclosure. Methods for determining active fragments are well known in the art. CTL clones obtained by stimulation by these modified peptides can recognize the original peptides and cause damage for cells expressing the original peptides.</p>
<p id="p0034" num="0034">Peptides of the present disclosure can be prepared using well known techniques. For example, the peptides can be prepared synthetically, using either recombinant DNA technology or chemical synthesis. Peptides of the present disclosure may be synthesized individually or as longer polypeptides comprising two or more peptides. The peptides of the present disclosure are preferably isolated, i.e., substantially free of other naturally occurring host cell proteins and fragments thereof.</p>
<p id="p0035" num="0035">The peptides of the present disclosure may contain modifications, such as glycosylation, side chain oxidation, or phosphorylation; so long as the modifications do not destroy the biological activity of the peptides as described herein, namely the ability to binding to an HLA antigen and induce CTL. Other modifications include incorporation of D-amino acids or other amino acid mimetics that can be used, for example, to increase the serum half life of the peptides.</p>
<p id="p0036" num="0036">The peptides of this disclosure can be prepared as a combination, which includes two or more of peptides of the disclosure, for use as a vaccine for a disease associated with the over-expression of MPHOSPH1 and/or DEPDC1, e.g. cancers, such a vaccine inducing CTL in vivo. The cancers contemplated include, but are not limited to, bladder cancer, breast cancer, cervical cancer, cholangincellular carcinoma, CML, colorectal cancer, gastric cancer, NSCLC, lymphoma, osteosarcoma, prostate cancer, renal carcinoma, SCLC, soft tissue tumor. The peptides may be in a cocktail or may be conjugated to each other using standard techniques. For example, the peptides can be expressed as a single polypeptide sequence. The peptides in the combination may be the same or different. By administering the peptides of this disclosure, the peptides are presented at a high density on the HLA antigens of antigen-presenting cells, which, in turn, induces CTLs that specifically react toward the complex formed between the displayed peptide and the HLA antigen. Alternatively, antigen-presenting cells having immobilized the peptides of this disclosure on their cell surface, obtained by removing dendritic cells from the subjects, may be stimulated by the peptides of this disclosure.<!-- EPO <DP n="21"> --> Re-administration of these cells to the respective subjects induces CTL, and, as a result, aggressiveness towards the target cells can be increased.</p>
<p id="p0037" num="0037">More specifically, the present disclosure provides drugs for treating and/or preventing proliferation, metastasis, and such of a disease associated with the over-expression of MPHOSPH1 and/or DEPDC1, e.g. cancers, which include one or more of peptides of this disclosure. The peptides disclosed find particular utility in the treatment of a disease associating MPHOSPH1 and/or DEPDC1, e.g. cancers. The cancers contemplated include, but are not limited to, bladder cancer, breast cancer, cervical cancer, cholangincellular carcinoma, CML, colorectal cancer, gastric cancer, NSCLC, lymphoma, osteosarcoma, prostate cancer, renal carcinoma, SCLC, soft tissue tumor.</p>
<p id="p0038" num="0038">The peptides disclosed can be administered to a subject directly, as a pharmaceutical composition that has been formulated by conventional formulation methods. In such cases, in addition to the peptides of this disclosure, carriers, excipients, and such that are ordinarily used for drugs can be included as appropriate, without particular limitations. The immunogenic compositions of this disclosure may be used for treatment and prevention of a disease associating MPHOSPH1 and/or DEPDC1, e.g. cancers. The cancers contemplated include, but are not limited to, bladder cancer, breast cancer, cervical cancer, cholangincellular carcinoma, CML, colorectal cancer, gastric cancer, NSCLC, lymphoma, osteosarcoma, prostate cancer, renal carcinoma, SCLC, soft tissue tumor.</p>
<p id="p0039" num="0039">The immunogenic compositions for treatment and/or prevention of a disease associated with the over-expression of MPHOSPH1 and/or DEPDC1, e.g. cancers, which comprise as the active ingredient one or more peptides of the present disclosure, can further include an adjuvant so that cellular immunity will be established effectively. Alternatively, they may be administered with other active ingredients, such as anticancer agents. The cancers contemplated include, but are not limited to, bladder cancer, breast cancer, cervical cancer, cholangincellular carcinoma, CML, colorectal cancer, gastric cancer, NSCLC, lymphoma, osteosarcoma, prostate cancer, renal carcinoma, SCLC, soft tissue tumor. Suitable formulations include granules. Suitable adjuvants are described in the literature (<nplcit id="ncit0063" npl-type="s"><text>Johnson AG. (1994) Clin. Microbiol. Rev., 7:277-89</text></nplcit>.). Exemplary adjuvants include, but are not limited to, aluminum phosphate, aluminum hydroxide, and alum. Furthermore, liposome formulations, granular formulations in which the drug is bound to few-micrometer diameter beads, and formulations in which a lipid is bound to the peptide may be conveniently used. The method of administration may be oral, intradermal, subcutaneous, intravenous injection, or such, and may include systemic administration or local administration to the vicinity of the targeted tumor. The dose of the peptide(s) of this disclosure can be adjusted appropriately according to the disease to be treated, age of the patient; weight,<!-- EPO <DP n="22"> --> method of administration, and such. Though the dosage is ordinarily 0.001 mg to 1000 mg, preferably 0.01 mg to 100 mg, more preferably 0.1 mg to 10 mg, preferably administered once in a few days to few months, one skilled in the art can readily select the appropriate dose and method of administration, as, the selection and optimization of these parameters is well within routine skill.</p>
<p id="p0040" num="0040">The present disclosure further provides intracellular vesicles called exosomes, which present complexes formed between the peptides of this invention and HLA antigens on their surface. Exosomes can be prepared, for example, by using the methods described in detail in Published Japanese Translation of International Publication Nos. <patcit id="pcit0008" dnum="JPHEI11510507B"><text>Hei 11-510507</text></patcit> and <patcit id="pcit0009" dnum="JP2000512161A"><text>2000-512161</text></patcit>, and are preferably prepared using antigen-presenting cells obtained from subjects who are targets of treatment and/or prevention. The exosomes of this disclosure can be inoculated as cancer vaccines, similarly to the peptides of this disclosure.</p>
<p id="p0041" num="0041">The type of HLA antigens used must match that of the subject requiring treatment and/or prevention. For example, in the Japanese population, HLA-A24 or HLA-A2, particularly HLA-A2402 or HLA-A0201, is often appropriate.</p>
<p id="p0042" num="0042">In some embodiments, the vaccine compositions of the present disclosure include a component which primes cytotoxic T lymphocytes. Lipids have been identified as agents capable of priming CTL in vivo against viral antigens. For example, palmitic acid residues can be attached to the epsilon-and alpha-amino groups of a lysine residue and then linked to an immunogenic peptide of the disclosure. The lipidated peptide can then be administered either directly, in a micelle or particle, incorporated into a liposome, or emulsified in an adjuvant. As another example of a lipid priming of CTL responses, E. coli lipoproteins, such as tripalmitoyl-S-glycerylcysteinlyseryl- serine (P3CSS), can be used to prime CTL when covalently attached to an appropriate peptide (see, e.g., <nplcit id="ncit0064" npl-type="s"><text>Deres K, et al., (1989) Nature 342:561-4</text></nplcit>.).</p>
<p id="p0043" num="0043">The immunogenic compositions of the present disclosure may also include nucleic acids encoding one or more of the immunogenic peptides disclosed here. See, e.g., <nplcit id="ncit0065" npl-type="s"><text>Wolff JA et al., (1990) Science 247:1465-8</text></nplcit>; <patcit id="pcit0010" dnum="US5580859A"><text>U.S. Patent Nos. 5,580,859</text></patcit>; <patcit id="pcit0011" dnum="US5589466A"><text>5,589,466</text></patcit>; <patcit id="pcit0012" dnum="US5804566A"><text>5,804,566</text></patcit>; <patcit id="pcit0013" dnum="US5739118A"><text>5,739,118</text></patcit>; <patcit id="pcit0014" dnum="US5736524A"><text>5,736,524</text></patcit>; <patcit id="pcit0015" dnum="US5679647A"><text>5,679,647</text></patcit>; and <patcit id="pcit0016" dnum="WO9804720A"><text>WO 98/04720</text></patcit>. Examples of DNA-based delivery technologies include "naked DNA", facilitated (bupivicaine, polymers, peptide-mediated) delivery, cationic lipid complexes, and particle-mediated ("gene gun") or pressure-mediated delivery (see, e.g., <patcit id="pcit0017" dnum="US5922687A"><text>U.S. Patent No. 5,922,687</text></patcit>).</p>
<p id="p0044" num="0044">The immunogenic peptides disclosed can also be expressed by viral or bacterial vectors. Examples of suitable expression vectors include attenuated viral hosts, such as vaccinia or fowlpox. This approach involves the use of vaccinia virus, e.g., as a vector to express nucleotide sequences that encode the peptide. Upon introduction into a host, the recombinant vaccinia virus expresses the immunogenic<!-- EPO <DP n="23"> --> peptide, and thereby elicits an immune response. Vaccinia vectors and methods useful in immunization protocols are described in, e.g., <patcit id="pcit0018" dnum="US4722848A"><text>U.S. Patent No. 4,722,848</text></patcit>. Another suitable vector is BCG (Bacille Calmette Guerin). BCG vectors are described in <nplcit id="ncit0066" npl-type="s"><text>Stover CK, et al., (1991) Nature 351:456-60</text></nplcit>. A wide variety of other vectors useful for therapeutic administration or immunization e.g., adeno and adeno-associated virus vectors, retroviral vectors, Salmonella typhi vectors, detoxified anthrax toxin vectors, and the like, are known in the art. See, e.g., <nplcit id="ncit0067" npl-type="s"><text>Shata MT, et al., (2000) Mol. Med. Today 6:66-71</text></nplcit>; <nplcit id="ncit0068" npl-type="s"><text>Shedlock DJ and Weiner DB., et al., (2000) J. Leukoc. Biol. 68:793-806</text></nplcit>; and <nplcit id="ncit0069" npl-type="s"><text>Hipp JD, et al., (2000) In Vivo 14:571-85</text></nplcit>.</p>
<p id="p0045" num="0045">The present disclosure also provides methods of inducing antigen-presenting cells using one or more peptides of this disclosure. The antigen-presenting cells can be induced by inducing dendritic cells from the peripheral blood monocytes and then contacting (stimulating) them with one or more peptides disclosed in vitro, ex vivo or in vivo. When peptides of the present disclosure are administered to the subjects, antigen-presenting cells that have the peptides of this disclosure immobilized to them are induced in the body of the subject. Alternatively, after immobilizing the peptides of this disclosure to the antigen-presenting cells, the cells can be administered to the subject as a vaccine. For example, the ex vivo administration may include the steps of:
<ol id="ol0002" compact="compact" ol-style="">
<li>a: collecting antigen-presenting cells from a subject, and</li>
<li>b: contacting the antigen-presenting cells of step a with a peptide of the present disclosure</li>
</ol></p>
<p id="p0046" num="0046">The antigen-presenting cells obtained by step b can be administered to the subject as a vaccine.</p>
<p id="p0047" num="0047">This disclosure also provides a method for inducing antigen-presenting cells having a high level of cytotoxic T cell inducibility, in which the method includes the step of transferring genes composed of polynucleotide(s) encoding one or more peptides of this disclosure to antigen-presenting cells in vitro. The introduced genes may be in the form of DNAs or RNAs. For the method of introduction, without particular limitations, various methods conventionally performed in this field, such as lipofection, electro-poration, and calcium phosphate method may be suitably used. More specifically, transfection may be performed as described in <nplcit id="ncit0070" npl-type="s"><text>Reeves ME, et al., (1996) Cancer Res., 56:5672-7</text></nplcit>.; <nplcit id="ncit0071" npl-type="s"><text>Butterfield LH, et al., (1998) J. Immunol., 161:5607-13</text></nplcit>.; <nplcit id="ncit0072" npl-type="s"><text>Boczkowski D, et al., (1996) J. Exp. Med., 184:465-72</text></nplcit>.; Published Japanese Translation of International Publication No. <patcit id="pcit0019" dnum="JP2000509281A"><text>2000-509281</text></patcit>. By transferring the gene into antigen-presenting cells, the gene undergoes transcription, translation, and such in the cell, and then the obtained protein is processed by MHC Class I or Class II, and proceeds through a presentation pathway to present partial peptides.<!-- EPO <DP n="24"> --></p>
<p id="p0048" num="0048">The present disclosure further provides methods for inducing CTL using one or more peptides of this disclosure. When the peptides of this disclosure are administered to a subject, CTL are induced in the body of the subject, and the strength of the immune system targeting the cells expressing MPHOSPH1 and/or DEPDC1, e.g. cancer cells in the tumor tissues is thereby enhanced. The cancers contemplated include, but are not limited to, bladder cancer, breast cancer, cervical cancer, cholangincellular carcinoma, CML, colorectal cancer, gastric cancer, NSCLC, lymphoma, osteosarcoma, prostate cancer, renal carcinoma, SCLC, soft tissue tumor. Alternatively, the peptides of the present disclosure may be used in the context of an ex vivo therapeutic method, in which subject-derived antigen-presenting cells and CD8-positive cells or peripheral blood mononuclear leukocytes are contacted (stimulated) with one or more peptides of this disclosure in vitro, and, after inducing CTL, the cells are returned to the subject. For example, the method may include the steps of:
<ol id="ol0003" compact="compact" ol-style="">
<li>a: collecting antigen-presenting cells from a subject,</li>
<li>b: contacting the antigen-presenting cells of step a with a peptide of the present invention,</li>
<li>c: mixing the antigen-presenting cells of step b with CD<sup>8+</sup> T cells and co-culturing so as to induce cytotoxic T-cells:, and</li>
<li>d: collecting CD<sup>8+</sup> T cells from the co-culture of step c.</li>
</ol>
The CD<sup>8+</sup> T cells having cytotoxic activity obtained by step d can be administered to the subject as a vaccine.</p>
<p id="p0049" num="0049">The present disclosure further provides methods for producing activated cytotoxic T cell using the peptides of this disclosure. For example, the method may include the following steps of:
<ul id="ul0002" list-style="none" compact="compact">
<li>a: collecting T cells from a subject, and</li>
<li>b: contacting T cells with following peptides.
<ol id="ol0004" compact="compact" ol-style="">
<li>(1) An isolated peptide of less than about 15 amino acids selected from the group consisting of peptides having the amino acid sequences of SEQ ID NOs: 7, 8, 9, 10, 11, 12, 192, 195, 197, 209, 225, 226 228, 230, 240, 241, 243, 244, 249, 253, 254 and 255.</li>
<li>(2) A peptide having cytotoxic T cell inducibility, wherein said peptide has an amino acid sequence selected from the group consisting of SEQ ID NOs: 7, 8, 9, 10, 11, 12, 192, 195, 197, 209, 225, 226 228, 230, 240, 241, 243, 244, 249, 253, 254 and 255, wherein 1, 2, or several amino acids are substituted, deleted, or added.</li>
</ol></li>
</ul></p>
<p id="p0050" num="0050">The present disclosure also provides method for producing APC having activated T-cell inducibility using the peptides of the present disclosure. For instance, the method may include the step of contacting antigen presenting cells with the peptides to produce antigen presenting cells presenting the peptide and HLA antigen on the<!-- EPO <DP n="25"> --> surface.<br/>
In the context of the present disclosure, "activated cytotoxic T cell" induces IFN-gamma producing, IFN-gamma releasing, and death of tumor cells.</p>
<p id="p0051" num="0051">The present disclosure further provides isolated cytotoxic T cells induced using the peptides of this disclosure. The cytotoxic T cells, induced by stimulation with an antigen-presenting cell presenting one or more peptides of this disclosure, are preferably derived from subjects who are the target of treatment and/or prevention, and can be administered alone or in combination with other drugs, including one or more peptides of this disclosure or exosomes having anti-tumor activity. The obtained cytotoxic T cells act specifically against target cells presenting the peptides of this disclosure or preferably the same peptide(s) used for induction. The target cells may be cells that express MPHOSPH1 and/or DEPDC1 endogenously, or cells that are transfected with MPHOSPH1 and/or DEPDC1 genes. Cells that present the peptides of this disclosure on the cell surface, due to stimulation with these peptides, can also become targets of attack.</p>
<p id="p0052" num="0052">The present disclosure also provides antigen-presenting cells presenting complexes formed between HLA antigens and one or more peptides of this disclosure. The antigen-presenting cells, obtained through contact with the peptides of this disclosure or the nucleotides encoding such peptides, are preferably derived from subjects who are the target of treatment and/or prevention, and can be administered as vaccines, alone or in combination with other drugs, including the peptides, exosomes, or cytotoxic T cells of the present disclosure.</p>
<p id="p0053" num="0053">The present disclosure also provides a composition comprising nucleic acids encoding polypeptides that are capable of forming a subunit of a T cell receptor (TCR), and methods of using the same. The TCR subunits have the ability to form TCRs that confer specificity to T cells for tumor cells presenting MPHOSPH1 or DEPDC1. By using the known method in the art, the nucleic acids of alpha- and beta-chain as the TCR subunits of the CTL induced with one or more peptides of this disclosure may be identified (<patcit id="pcit0020" dnum="WO2007032255A"><text>WO2007/032255</text></patcit>) and <nplcit id="ncit0073" npl-type="s"><text>Morgan et al., J Immunol, 171, 3288 (2003</text></nplcit>)). The derivative TCRs preferably bind target cells displaying the MPHOSPH1 or DEPDC1 peptide with high avidity, and optionally mediate efficient killing of target cells presenting the MPHOSPH1 or DEPDC1 peptide in vivo and in vitro.</p>
<p id="p0054" num="0054">The nucleic acids encoding the TCR subunits can be incorporated into suitable vectors e.g. retroviral vectors. These vectors are well known in the art. The nucleic acids or the vectors comprising them usefully can be transferred into a T cell, which T cell is preferably from a patient. Advantageously, the disclosure provides an off-the-shelf composition allowing rapid modification of a patient's own T cells (or those of another mammal) to rapidly and easily produce modified T cells having excellent<!-- EPO <DP n="26"> --> cancer cell killing properties.</p>
<p id="p0055" num="0055">Also, the present disclosure provides CTLs which are prepared by transduction with the nucleic acids encoding the TCR subunits polypeptides binding with MPHOSPH1 or DEPDC1 peptide e.g. SEQ ID NOs: 7, 8, 9, 10, 11, 12, 192, 195, 197, 209, 225, 226 228, 230, 240, 241, 243, 244, 249, 253, 254 or 255 in the context of HLA-A24 or HLA-A2. The transduced CTLs are capable of homing to cancer cells in vivo, and expanded by well known culturing method in vitro (e.g., <nplcit id="ncit0074" npl-type="s"><text>Kawakami et al., J Immunol., 142, 3452-3461 (1989</text></nplcit>)). The T cells of the disclosure can be used to form an immunogenic composition useful in treating or preventing cancer in a patient in need of therapy or protection (<patcit id="pcit0021" dnum="WO2006031221A"><text>WO2006/031221</text></patcit>).</p>
<p id="p0056" num="0056">In the context of the present disclosure, the term "vaccine" (also referred to as an immunogenic composition) refers to a substance that induces anti-tumor immunity or suppresses cancers upon inoculation into animals. According to the present disclosure, polypeptides having the amino acid sequence of SEQ ID NO: 7, 8 or 12 were suggested to be HLA-A24 restricted epitope peptides and those of SEQ ID NO: 9, 10, 11, 192, 195, 197, 209, 225, 226, 228 230, 240, 241, 243, 244, 249, 253, 254 or 255 were suggested to be HLA-A2 restricted epitope peptides that may induce potent and specific immune response against cells expressing MPHOSPH1 and/or DEPDC1, e.g. cancer cells expressing MPHOSPH 1 and/or DEPDC1. The cancers contemplated include, but are not limited to, bladder cancer, breast cancer, cervical cancer, cholangincellular carcinoma, CML, colorectal cancer, gastric cancer, NSCLC, lymphoma, osteosarcoma, prostate cancer, renal carcinoma, SCLC, soft tissue tumor. Thus, the present invention also encompasses a method of inducing anti-tumor immunity using polypeptides having the amino acid sequence of SEQ ID NO: 7, 8, 9, 10, 11, 12, 192, 195, 197, 209, 225, 226, 228, 230, 240, 241, 243, 244, 249, 253, 254 or 255 or a variant thereof (i.e., including 1, 2, or several amino acid substitutions, deletions, or additions). In general, anti-tumor immunity includes immune responses such as follows:
<ul id="ul0003" list-style="dash" compact="compact">
<li>an induction of cytotoxic lymphocytes against tumors containing cells expressing MPHOSPH1 and/or DEPDC1,</li>
<li>an induction of antibodies that recognize tumors containing cells expressing MPHOSPH1 and/or DEPDC1, and</li>
<li>an induction of anti-tumor cytokine production.</li>
</ul></p>
<p id="p0057" num="0057">Therefore, when a certain peptide induces any one of these immune responses upon inoculation into an animal, the peptide is decided to have anti-tumor immunity inducing effect. The induction of the anti-tumor immunity by a peptide can be detected by observing in vivo or in vitro the response of the immune system in the host against the peptide.<!-- EPO <DP n="27"> --></p>
<p id="p0058" num="0058">For example, a method for detecting the induction of cytotoxic T lymphocytes is well known. A foreign substance that enters the living body is presented to T cells and B cells by the action of antigen-presenting cells (APCs). T cells that respond to the antigen presented by APC in antigen specific manner differentiate into cytotoxic T cells (also referred to as cytotoxic T lymphocytes or CTLs) due to stimulation by the antigen, and then proliferate; this process is referred to herein as "activation" of T cells. Therefore, CTL induction by a certain peptide can be evaluated by presenting the peptide to a T cell by APC, and detecting the induction of CTL. Furthermore, APCs have the effect of activating CD4+ T cells, CD8+ T cells, macrophages, eosinophils and NK cells. Since CD4+ T cells are also important in anti-tumor immunity, the anti-tumor immunity inducing action of the peptide can be evaluated using the activation effect of these cells as indicators.</p>
<p id="p0059" num="0059">A method for evaluating the inducing action of CTL using dendritic cells (DCs) as APC is well known in the art. DC is a representative APC having the strongest CTL inducing action among APCs. In this method, the test polypeptide is initially contacted with DC and then this DC is contacted with T cells. Detection of T cells having cytotoxic effects against the cells of interest after the contact with DC shows that the test polypeptide has an activity of inducing the cytotoxic T cells. Activity of CTL against tumors can be detected, for example, using the lysis of <sup>51</sup>Cr-labeled tumor cells as the indicator. Alternatively, it is well known to evaluate the degree of tumor cell damage using <sup>3</sup>H-thymidine uptake activity or LDH (lactose dehydrogenase)-release as the indicator. Furthermore, it can be also examined by measuring IFN-gamma produced and released by CTL in the presence of antigen-presenting cells that carry immobilized peptides by visualizing using anti-IFN-gamma antibodies, such as an ELISPOT assay.</p>
<p id="p0060" num="0060">Apart from DC, peripheral blood mononuclear cells (PBMCs) may also be used as the APC. The induction of CTL is reported to be enhanced by culturing PBMC in the presence of GM-CSF and IL-4. Similarly, CTL has been shown to be induced by culturing PBMC in the presence of keyhole limpet hemocyanin (KLH) and IL-7.</p>
<p id="p0061" num="0061">The test polypeptides confirmed to possess CTL inducing activity by these methods are polypeptides having DC activation effect and subsequent CTL inducing activity. Therefore, polypeptides that induce CTL against tumor cells are useful as vaccines against diseases associated with the over-expression of MPHOSPH1 and/or DEPDC1, e.g. cancers. Furthermore, APC that have acquired the ability to induce CTL against a disease associating MPHOSPH1 and/or DEPDC1, e.g. cancers, by contacting with the polypeptides are useful as vaccines against the disease. Furthermore, CTL that have acquired cytotoxicity due to presentation of the polypeptide antigens by APC can be also used as vaccines against a disease associating MPHOSPH1 and/or DEPDC1, e.g.<!-- EPO <DP n="28"> --> cancers. Such therapeutic methods for a disease associating MPHOSPH1 and/or DEPDC1, e.g. cancers, using anti-tumor immunity due to APC and CTL, are referred to as cellular immunotherapy. The cancers contemplated include, but are not limited to, bladder cancer, breast cancer, cervical cancer, cholangincellular carcinoma, CML, colorectal cancer, gastric cancer, NSCLC, lymphoma, osteosarcoma, prostate cancer, renal carcinoma, SCLC, soft tissue tumor.</p>
<p id="p0062" num="0062">Generally, when using a polypeptide for cellular immunotherapy, efficiency of the CTL-induction can be increased by combining a plurality of polypeptides having different structures and contacting them with DC. Therefore, when stimulating DC with protein fragments, it is advantageous to use a mixture of multiple types of fragments.</p>
<p id="p0063" num="0063">The induction of anti-tumor immunity by a polypeptide can be further confirmed by observing the induction of antibody production against tumors. For example, when antibodies against a polypeptide are induced in a laboratory animal immunized with the polypeptide, and when growth, proliferation and/or metastasis of tumor cells is suppressed by those antibodies, the polypeptide is determined to induce anti-tumor immunity.</p>
<p id="p0064" num="0064">Anti-tumor immunity can be induced by administering a vaccine of this disclosure, and the induction of anti-tumor immunity enables treatment and prevention of a disease associated with the over-expression of MPHOSPH1 and/or DEPDC1, e.g. cancers. Therapy against or prevention of the onset of a disease associated with the over-expression of MPHOSPH1 and/or DEPDC1, e.g. cancers, may include inhibition of the growth of cells expressing MPHOSPH1 and/or DEPDC1, e.g. cancer cells, involution of these cells and suppression of occurrence of these cells, e.g. cancer cells. Decrease in mortality of individuals having a disease associating MPHOSPH1 and/or DEPDC1, e.g. cancers, decrease of the disease markers in the blood, alleviation of detectable symptoms accompanying the disease and such are also included in the therapy or prevention of the disease, e.g. cancers. Such therapeutic and preventive effects are preferably statistically significant, for example, observed at a significance level of 5% or less, wherein the therapeutic or preventive effect of a vaccine against a disease associating MPHOSPH1 and/or DEPDC1, e.g. cancers, is compared to a control without vaccine administration. For example, Student's t-test, the Mann-Whitney U-test or ANOVA may be used for determining statistical significance.</p>
<p id="p0065" num="0065">In that the present disclosure provides a method for treating, or preventing a disease associated with the over-expression of MPHOSPH1 and/or DEPDC1, e.g. cancers, the therapeutic compounds or compositions may be administered prophylactically or therapeutically to subjects suffering from or at risk of (or susceptible to) developing the disease. Such subjects may be identified using standard clinical methods. In the context<!-- EPO <DP n="29"> --> of the present disclosure, prophylactic administration occurs prior to the manifestation of overt clinical symptoms of disease, such that a disease or disorder is prevented or alternatively delayed in its progression. In the context of the field of medicine, the term "prevent" encompasses any activity which reduces the burden of mortality or morbidity from disease. Prevention can occur "t primary, secondary and tertiary prevention levels. While primary prevention avoids the development of a disease, secondary and tertiary levels of prevention encompass activities aimed at preventing the progression of a disease and the emergence of symptoms as well as reducing the negative impact of an already established disease by restoring function and reducing disease-related complications.</p>
<p id="p0066" num="0066">In the context of cancer treatment, the term "efficacious" refers to a treatment that leads to a decrease in size, prevalence or metastatic potential of cancer in a subject. When a treatment is applied prophylactically, "efficacious" means that the treatment retards or prevents occurrence of non cancer or alleviates a clinical symptom of cancer. The assessment of cancer can be made using standard clinical protocols. Furthermore, the efficaciousness of a treatment may be determined in association with any known method for diagnosing or treating cancer. For example, cancer can be diagnosed histopathologically or by identifying symptomatic anomalies.</p>
<p id="p0067" num="0067">The above-mentioned peptide, having immunological activity, or a polynucleotide or vector encoding such a peptide, may be combined with an adjuvant. An adjuvant refers to a compound that enhances the immune response against the peptide when administered together (or successively) with the peptide having immunological activity. Examples of suitable adjuvants include cholera toxin, salmonella toxin, alum and such, but are not limited thereto. Furthermore, a vaccine of this disclosure may be combined appropriately with a pharmaceutically acceptable carrier. Examples of such carriers are sterilized water, physiological saline, phosphate buffer, culture fluid and such. Furthermore, the vaccine may contain as necessary, stabilizers, suspensions, preservatives, surfactants and such. The vaccine is administered systemically or locally. Vaccine administration may be performed by single administration or boosted by multiple administrations.</p>
<p id="p0068" num="0068">When using APC or CTL as the vaccine of this disclosure , a disease associated with the over-expression of MPHOSPH1 and/or DEPDC1, e.g. cancers, can be treated or prevented, for example, by the ex vivo method. More specifically, PBMCs of the subject receiving treatment or prevention are collected, contacted ex vivo with a peptide of the present disclosure. Following the induction of APC or CTL, the cells may be administered to the subject. APC can be also induced by introducing a vector encoding the peptide into PBMCs ex vivo. APC or CTL induced in vitro can be cloned prior to administration. By cloning and growing cells having high activity of damaging<!-- EPO <DP n="30"> --> target cells, cellular immunotherapy can be performed more effectively. Furthermore, APC and CTL isolated in this manner may be used for cellular immunotherapy not only against individuals from whom the cells are derived, but also against similar types of diseases in other individuals.</p>
<p id="p0069" num="0069">Aspects of the present disclosure are described in the following examples, which are presented only to illustrate the present disclosure and to assist one of ordinary skill in making and using the same. The examples are not intended in any way to otherwise limit the scope of the disclosure.</p>
<p id="p0070" num="0070">Although methods and materials similar or equivalent to those described herein can be used in the practice or testing of the present disclosure, suitable methods and materials are described below.</p>
<heading id="h0006"><u>EXAMPLES</u></heading>
<p id="p0071" num="0071">Hereinafter, the present disclosure is exemplified, but not restricted, by the following Examples. However, materials, methods and such described herein only illustrate aspects of the disclosure and in no way are intended to limit the scope of the present disclosure . As such, materials, methods and such similar or equivalent to those described therein may be used in the practice or testing of the present disclosure.</p>
<heading id="h0007"><u>EXAMPLE 1</u></heading>
<heading id="h0008"><u>MATERIALS AND METHODS</u></heading>
<heading id="h0009"><u>Cell lines</u></heading>
<p id="p0072" num="0072">A24LCL cells (HLA-A24/24), human B-lymphoblastoid cell lines, T2 cell and COS7 were purchased from ATCC.</p>
<heading id="h0010"><u>Candidate selection of peptide derived from MPHOSOH1 and DEPDC1</u></heading>
<p id="p0073" num="0073">9-mer and 10-mer peptides derived from MPHOSOH1 or DEPDC1 that bind to HLA-A*2402 and HLA-A*0201 molecule were predicted using binding prediction software "BIMAS" (bimas.dcrt.nih.gov/cgi-bin/molbio/ken_parker_comboform) (<nplcit id="ncit0075" npl-type="s"><text>Parker KC, et al., (1994) J Immunol.;152(1):163-75</text></nplcit>.; <nplcit id="ncit0076" npl-type="s"><text>Kuzushima K, et al., (2001) Blood.,98(6):1872-81</text></nplcit>.). These peptides were synthesized by Sigma (Sapporo, Japan) according to the standard solid phase synthesis method and purified by reversed phase HPLC. The purity (&gt;90%) and the identity of the peptides were determined by analytical HPLC and mass spectrometry analysis, respectively. Peptides were dissolved in dimethylsulfoxide (DMSO) at 20 mg/ml and stored at -80 degrees C.</p>
<heading id="h0011"><u>In vitro CTL Induction</u></heading>
<p id="p0074" num="0074">Monocyte-derived dendritic cells (DCs) were used as antigen-presenting cells (APCs) to induce CTL responses against peptides presented on HLA. DCs were generated in vitro as described elsewhere (<nplcit id="ncit0077" npl-type="s"><text>Nukaya I et al., (1999) Int. J. Cancer 80, 92-7</text></nplcit>., <nplcit id="ncit0078" npl-type="s"><text>Tsai V et al., (1997) J. Immunol 158:1796-802</text></nplcit>.). Briefly, peripheral blood mononuclear cells (PBMCs) isolated from a normal volunteer (HLA-A*2402 and/or<!-- EPO <DP n="31"> --> HLA-A*0201) by Ficoll-Paque (Pharmacia) solution were separated by adherence to a plastic tissue culture flask (Becton Dickinson) so as to enrich them for the monocyte fraction. The monocyte-enriched population was cultured in the presence of 1000 U/ml of GM-CSF (Genzyme) and 1000 U/ml of IL-4 (Genzyme) in AIM-V (Invitrogen) containing 2% heat-inactivated autologous serum (AS). After 7 days in the culture, the cytokine-generated DCs were pulsed with 20 mcg/ml of the synthesized peptides in the presence of 3 mcg/ml of beta 2-microglobulin for 4 hrs at 20 degrees C in AIM-V. These peptide-pulsed DCs were then inactivated by MMC (30 mcg/ml for 30 mins) and mixed at a 1:20 ratio with autologous CD8+ T cells, obtained by positive selection with Dynabeads M-450 CD8 (Dynal) and DETACHa BEAD™ (Dynal). These cultures were set up in 48-well plates (Coming); each well contained 1.5x10<sup>4</sup> peptide-pulsed DCs, 3x10<sup>5</sup> CD<sup>8+</sup> T cells and 10 ng/ml of IL-7 (Genzyme) in 0.5 ml of AIM-V/2% AS. Three days later, these cultures were supplemented with IL-2 (CHIRON) to a final concentration of 20 IU/ml. On day 7 and 14, the T cells were further restimulated with the autologous peptide-pulsed DCs. The DCs were prepared each time by the same way described above. CTL was tested against peptide-pulsed A24LCL cells or T2 cells after the 3rd round of peptide stimulation on day 21.</p>
<heading id="h0012"><u>CTL Expansion Procedure</u></heading>
<p id="p0075" num="0075">CTLs were expanded in culture using the method similar to that described by Riddell SR, et al., (<nplcit id="ncit0079" npl-type="s"><text>Walter EA et al., (1995) N Engl J Med 333:1038-44</text></nplcit>.; <nplcit id="ncit0080" npl-type="s"><text>Riddel SR, et al., (1996) Nature Med. 2:216-23</text></nplcit>.). A total 5x10<sup>4</sup> of CTLs were resuspended in 25 ml of AIM-V/5% AS with 2 kinds of human B-lymphoblastoid cell lines, inactivated by MMC, in the presence of 40 ng/ml of anti-CD3 monoclonal antibody (Pharmingen). One day after initiating the cultures, 120 IU/ml of IL-2 were added to the cultures. The cultures were fed with fresh AIM-V/5% AS containing 30 IU/ml of IL-2 on days 5, 8 and 11.</p>
<heading id="h0013"><u>Establishment of CTL clones</u></heading>
<p id="p0076" num="0076">The dilutions were made to have 0.3, 1, and 3 CTLs/well in 96 round-bottomed micro titer plate (Nalge Nunc International). CTLs were cultured with 7x10<sup>4</sup> cells/well of 2 kinds of human B-lymphoblastoid cell lines, 30ng/ml of anti-CD3 antibody, and 125 U/ml of IL-2 in total of 150 mcl/well of AIM-V containing 5%AS. 50 mcl /well of IL-2 was added to the medium 10 days later so that IL-2 became 125 U/ml in the final concentration. CTL activity of CTLs was tested on the 14th day, and CTL clones were expanded using the same method above.</p>
<heading id="h0014"><u>Specific CTL activity</u></heading>
<p id="p0077" num="0077">To examine the specific CTL activity, IFN-gamma ELISPOT assay and IFN-gamma ELISA were performed.<br/>
Briefly, peptide-pulsed A24-LCL or T2 cell (1x10<sup>4</sup>/well) was prepared as a<!-- EPO <DP n="32"> --> stimulator cell. Cultured Cells in 48 wells or CTL clones after limiting dilution were used as a responder cells. IFN-gamma ELISPOT assay and ELISA were performed under manufacture procedure.</p>
<heading id="h0015"><u>Cell Culture and Transfection</u></heading>
<p id="p0078" num="0078">HLA-A24 B-LCLs (A24LCL), Epstein Bar virus-transformed, was established. Jiyoye, EB-3, COS7, HT 1376, RT-4 and J82 were purchased from American Type Culture Collection (Rockville, MD). A24LCL, Jiyoye and EB-3 were maintained in RPMI1640 containing 10% fetal bovine serum (GEMINI Bio-Products) and 1% antibiotic solution (Sigma). COS7, HT1376, RT-4 and J82 were maintained in appropriate medium and antibiotics. Transfection of COS7 and HEK were performed using FUGENE6 (Roche). HEK-A2 cell, HLA-A*0201 molecule expressing stable clone, was established by transfection of pcDNA6.2-HLA-A2 plasmid and isolated by limiting dilution method in the presence of 5 mcg/ml Blastcidin S.</p>
<heading id="h0016"><u>Immunogenicity of epitope peptides in BALB/c mice</u></heading>
<p id="p0079" num="0079">For induction of the peptide-specific CTLs, immunization was given using 100 ml of vaccine mixture, which contains 50 mcl (100 mcg) of HLA-A24 restricted peptide and 50 mcl of IFA per mouse. The vaccine was subcutaneously injected in the right flank for the first immunization on day 0 and in the left flank for the second on the day 7. On day 14, splenocytes of the vaccinated mice, without any in vitro stimulation, were used responder cells, and RLmale1 cells pulsed with or without peptides were used as the stimulator cells for IFN-gamma ELISPOT assay.</p>
<heading id="h0017"><u>RESULTS</u></heading>
<heading id="h0018"><u>Enhanced MPHOSPH1 and DEPDC1 expression in cancers</u></heading>
<p id="p0080" num="0080">The global gene expression profile data obtained from various cancers using cDNA-microarray revealed that MPHOSPH1 (GenBank Accession No. NM_016195; SEQ ID No.1) and DEPDC1 (GenBank Accession No. BM683578) which had two variants; DEPDC1 V1 (SEQ ID Nos.3) and DEPDC1 V2 (SEQ ID No. 5) expression was elevated. MPHOSPH 1 expression was validly elevated in 30 out of 31 bladder cancers, 8 out of 36 breast cancers, 18 out of 18 cervical cancers, 5 out of 17 cholangincellular carcinomas, 25 out of 31 CMLs, 6 out of 11 colorectal cancers, 6 out of 14 gastric cancers, 5 out of 5 NSCLCs, 7 out of 7 lymphomas, 6 out of 10 osteosarcomas, 7 out of 22 prostate cancers, 10 out of 18 renal carcinomas and 15 out of 21 soft tissue tumors as compared with corresponding normal tissue. DEPDC 1 expression was validly elevated in 23 out of 25 bladder cancers, 6 out of 13 breast cancers, 12 out of 12 cervical cancers, 6 out of 6 cholangincellular carcinomas, 3 out of 4 CMLs, 2 out of 4 colorectal cancers, 6 out of 6 NSCLCs, 7 out of 7 lymphomas, 10 out of 14 osteosarcomas, 11 out of 24 prostate cancers, 14 out of 14 SCLCs and 22 out of 31 soft tissue tumors as compared with corresponding normal tissue (Table 1).<!-- EPO <DP n="33"> --></p>
<p id="p0081" num="0081">
<tables id="tabl0001" num="0001">
<table frame="all">
<title>[Table 1]</title>
<tgroup cols="8">
<colspec colnum="1" colname="col1" colwidth="27mm"/>
<colspec colnum="2" colname="col2" colwidth="28mm"/>
<colspec colnum="3" colname="col3" colwidth="26mm"/>
<colspec colnum="4" colname="col4" colwidth="31mm"/>
<colspec colnum="5" colname="col5" colwidth="45mm"/>
<colspec colnum="6" colname="col6" colwidth="24mm"/>
<colspec colnum="7" colname="col7" colwidth="31mm"/>
<colspec colnum="8" colname="col8" colwidth="32mm"/>
<thead>
<row>
<entry namest="col1" nameend="col8" align="left"><b>Ratio of cases observed up-regulation of <i>MPHOSPH1</i> or <i>DEPDC1</i> in cancerous tissue as compared with normal corresponding tissue</b></entry></row>
<row>
<entry/>
<entry align="center"><b>Bladder cancer</b></entry>
<entry align="center"><b>Breast cancer</b></entry>
<entry align="center"><b>Cervical cancer</b></entry>
<entry align="center"><b>Cholangiocellular Carcinoma</b></entry>
<entry align="center"><b>CML</b></entry>
<entry align="center"><b>Colorectal cancer</b></entry>
<entry align="center"><b>Gastric cancer</b></entry></row></thead>
<tbody>
<row>
<entry valign="bottom"><b>MPHOSPH1</b></entry>
<entry align="center" valign="bottom"><b>30/31</b></entry>
<entry align="center" valign="bottom"><b>8/36</b></entry>
<entry align="center" valign="bottom"><b>18/18</b></entry>
<entry align="center" valign="bottom"><b>5/17</b></entry>
<entry align="center" valign="bottom"><b>25/31</b></entry>
<entry align="center" valign="bottom"><b>6/11</b></entry>
<entry align="center" valign="bottom"><b>6/14</b></entry></row>
<row>
<entry valign="bottom"><b>DEPDC1</b></entry>
<entry align="center" valign="bottom"><b>23/25</b></entry>
<entry align="center" valign="bottom"><b>6/13</b></entry>
<entry align="center" valign="bottom"><b>12/12</b></entry>
<entry align="center" valign="bottom"><b>6/6</b></entry>
<entry align="center" valign="bottom"><b>3/4</b></entry>
<entry align="center" valign="bottom"><b>2/4</b></entry>
<entry align="center" valign="bottom"><b>-</b></entry></row>
<row>
<entry valign="bottom"/>
<entry align="center" valign="bottom"/>
<entry align="center" valign="bottom"/>
<entry align="center" valign="bottom"/>
<entry align="center" valign="bottom"/>
<entry align="center" valign="bottom"/>
<entry align="center" valign="bottom"/>
<entry align="center" valign="bottom"/></row></tbody></tgroup>
<tgroup cols="8">
<colspec colnum="1" colname="col1" colwidth="27mm"/>
<colspec colnum="2" colname="col2" colwidth="28mm"/>
<colspec colnum="3" colname="col3" colwidth="26mm"/>
<colspec colnum="4" colname="col4" colwidth="31mm"/>
<colspec colnum="5" colname="col5" colwidth="45mm"/>
<colspec colnum="6" colname="col6" colwidth="24mm"/>
<colspec colnum="7" colname="col7" colwidth="31mm"/>
<colspec colnum="8" colname="col8" colwidth="32mm"/>
<thead>
<row>
<entry/>
<entry align="center"><b>NSCLC</b></entry>
<entry align="center"><b>Lymphoma</b></entry>
<entry align="center"><b>Osteosarcoma</b></entry>
<entry align="center"><b>Prostate cancer</b></entry>
<entry align="center"><b>Renal cancer</b></entry>
<entry align="center"><b>SCLC</b></entry>
<entry align="center"><b>Soft Tissue Tumor</b></entry></row></thead>
<tbody>
<row>
<entry valign="bottom"><b>MPHOSPH1</b></entry>
<entry align="center" valign="bottom"><b>5/5</b></entry>
<entry align="center" valign="bottom"><b>7/7</b></entry>
<entry align="center" valign="bottom"><b>6/10</b></entry>
<entry align="center" valign="bottom"><b>7/22</b></entry>
<entry align="center" valign="bottom"><b>10/18</b></entry>
<entry align="center" valign="bottom"><b>-</b></entry>
<entry align="center" valign="bottom"><b>15/21</b></entry></row>
<row>
<entry valign="bottom"><b>DEPDC1</b></entry>
<entry align="center" valign="bottom"><b>6/6</b></entry>
<entry align="center" valign="bottom"><b>7/7</b></entry>
<entry align="center" valign="bottom"><b>10/14</b></entry>
<entry align="center" valign="bottom"><b>11/24</b></entry>
<entry align="center" valign="bottom"><b>-</b></entry>
<entry align="center" valign="bottom"><b>14/14</b></entry>
<entry align="center" valign="bottom"><b>22/31</b></entry></row></tbody></tgroup>
</table>
</tables></p>
<heading id="h0019"><u>Prediction of HLA-A24 andHLA-A2 binding peptides derived from MPHOSPH1 or DEPDC1</u></heading>
<p id="p0082" num="0082">Table 2 sets forth the HLA-A*2402 binding peptides for MPHOSPH 1 in order of binding affinity. Table 2A sets forth 9-mer peptides derived from MPHOSPH1 and Table 2B sets forth 10-mer peptides derived from MPHOSPH 1.<br/>
Table 3 sets forth the HLA-A*0201 binding peptides for MPHOSPH1 in order of binding affinity. Table 3A sets forth 9-mer peptides derived from MPHOSPH1 and Table 3B sets forth 10-mer peptides derived from MPHOSPH1.<br/>
Table 4 sets forth the HLA-A*2402 binding peptides for DEPDC1 V1 and V2 in order of binding affinity. Table 4A sets forth 9-mer peptides derived from DEPDC1 V1 and V2 and Table 4B sets forth 10-mer peptides derived from DEPDC1 V1.<br/>
Table 5 sets forth the HLA-A*0201 binding peptides for DEPDC1 V1 and V, Table 5A sets forth 9-mer peptides derived from DEPDC1 V1 and V2 and Table 5B sets forth 10-mer peptides derived from DEPDC1 V1 and V2.</p>
<p id="p0083" num="0083"><!-- EPO <DP n="34"> -->
<tables id="tabl0002" num="0002">
<table frame="bottom">
<title>[Table 2A]</title>
<tgroup cols="8" colsep="0">
<colspec colnum="1" colname="col1" colwidth="20mm"/>
<colspec colnum="2" colname="col2" colwidth="29mm"/>
<colspec colnum="3" colname="col3" colwidth="16mm"/>
<colspec colnum="4" colname="col4" colwidth="19mm"/>
<colspec colnum="5" colname="col5" colwidth="20mm"/>
<colspec colnum="6" colname="col6" colwidth="29mm"/>
<colspec colnum="7" colname="col7" colwidth="16mm"/>
<colspec colnum="8" colname="col8" colwidth="19mm"/>
<thead>
<row>
<entry namest="col1" nameend="col8" align="left" valign="top">HLA-A*2402 binding 9-mer peptides derived from <i>MPHOSPH1</i></entry></row>
<row>
<entry align="center" valign="top">Start Position</entry>
<entry align="center" valign="top">Amino Acid Sequence</entry>
<entry align="center" valign="top">SEQ ID NO.</entry>
<entry align="center" valign="top">Binding Score</entry>
<entry align="center" valign="top">Start = Position</entry>
<entry align="center" valign="top">Amino Acid Sequence</entry>
<entry align="center" valign="top">SEQ ID NO.</entry>
<entry align="center" valign="top">Binding Score</entry></row></thead>
<tbody>
<row rowsep="0">
<entry align="center">278</entry>
<entry align="center">IYNEYTYDL</entry>
<entry align="center">7</entry>
<entry align="center">360</entry>
<entry align="center">179</entry>
<entry align="center">LFDSLQERL</entry>
<entry align="center">29</entry>
<entry align="center">24</entry></row>
<row rowsep="0">
<entry align="center">1244</entry>
<entry align="center">DYADLKEKL</entry>
<entry align="center">13</entry>
<entry align="center">316.8</entry>
<entry align="center">268</entry>
<entry align="center">KFSVWVSFF</entry>
<entry align="center">30</entry>
<entry align="center">20</entry></row>
<row rowsep="0">
<entry align="center">1319</entry>
<entry align="center">QYERACKDL</entry>
<entry align="center">14</entry>
<entry align="center">300</entry>
<entry align="center">575</entry>
<entry align="center">KLLDLIEDL</entry>
<entry align="center">31</entry>
<entry align="center">17.28</entry></row>
<row rowsep="0">
<entry align="center">459</entry>
<entry align="center">CYLAYDETL</entry>
<entry align="center">15</entry>
<entry align="center">300</entry>
<entry align="center">1577</entry>
<entry align="center">RFPKPELEI</entry>
<entry align="center">32</entry>
<entry align="center">16.5</entry></row>
<row rowsep="0">
<entry align="center">462</entry>
<entry align="center">AYDETLNVL</entry>
<entry align="center">16</entry>
<entry align="center">288</entry>
<entry align="center">1414</entry>
<entry align="center">KYNADRKKW</entry>
<entry align="center">33</entry>
<entry align="center">16.5</entry></row>
<row rowsep="0">
<entry align="center">1054</entry>
<entry align="center">GYKDENNRL</entry>
<entry align="center">17</entry>
<entry align="center">288</entry>
<entry align="center">1230</entry>
<entry align="center">RTQNLKADL</entry>
<entry align="center">34</entry>
<entry align="center">14.4</entry></row>
<row rowsep="0">
<entry align="center">236</entry>
<entry align="center">LYGSLTNSL</entry>
<entry align="center">18</entry>
<entry align="center">288</entry>
<entry align="center">1421</entry>
<entry align="center">KWLEEKMML</entry>
<entry align="center">35</entry>
<entry align="center">14.4</entry></row>
<row rowsep="0">
<entry align="center">1446</entry>
<entry align="center">KYAEDRERF</entry>
<entry align="center">19</entry>
<entry align="center">240</entry>
<entry align="center">1617</entry>
<entry align="center">KSNEMEEDL</entry>
<entry align="center">36</entry>
<entry align="center">14.4</entry></row>
<row rowsep="0">
<entry align="center">899</entry>
<entry align="center">NYDIAIAEL</entry>
<entry align="center">20</entry>
<entry align="center">220</entry>
<entry align="center">1555</entry>
<entry align="center">KIEDGSVVL</entry>
<entry align="center">37</entry>
<entry align="center">14.4</entry></row>
<row rowsep="0">
<entry align="center">1118</entry>
<entry align="center">CYKAKIKEL</entry>
<entry align="center">21</entry>
<entry align="center">220</entry>
<entry align="center">1456</entry>
<entry align="center">KQQNEMEIL</entry>
<entry align="center">38</entry>
<entry align="center">12</entry></row>
<row rowsep="0">
<entry align="center">57</entry>
<entry align="center">DYLQVCLRI</entry>
<entry align="center">22</entry>
<entry align="center">105</entry>
<entry align="center">389</entry>
<entry align="center">KTQNEGERL</entry>
<entry align="center">39</entry>
<entry align="center">12</entry></row>
<row rowsep="0">
<entry align="center">676</entry>
<entry align="center">KFNQIKAEL</entry>
<entry align="center">23</entry>
<entry align="center">92.4</entry>
<entry align="center">1371</entry>
<entry align="center">KWKEKCNDL</entry>
<entry align="center">40</entry>
<entry align="center">11.52</entry></row>
<row rowsep="0">
<entry align="center">14</entry>
<entry align="center">SYVFSADPI</entry>
<entry align="center">24</entry>
<entry align="center">75</entry>
<entry align="center">1122</entry>
<entry align="center">KIKELETIL</entry>
<entry align="center">41</entry>
<entry align="center">11.52</entry></row>
<row rowsep="0">
<entry align="center">326</entry>
<entry align="center">AYRLLKLGI</entry>
<entry align="center">25</entry>
<entry align="center">60</entry>
<entry align="center">850</entry>
<entry align="center">FLLTIENEL</entry>
<entry align="center">42</entry>
<entry align="center">11.088</entry></row>
<row rowsep="0">
<entry align="center">255</entry>
<entry align="center">DYEQANLNM</entry>
<entry align="center">26</entry>
<entry align="center">37.5</entry>
<entry align="center">763</entry>
<entry align="center">SSLIINNKL</entry>
<entry align="center">43</entry>
<entry align="center">11.088</entry></row>
<row rowsep="0">
<entry align="center">29</entry>
<entry align="center">NFDGIKLDL</entry>
<entry align="center">27</entry>
<entry align="center">28</entry>
<entry align="center">1400</entry>
<entry align="center">KLINLQDEL</entry>
<entry align="center">44</entry>
<entry align="center">10.56</entry></row>
<row>
<entry align="center">286</entry>
<entry align="center">LFVPVSSKF</entry>
<entry align="center">28</entry>
<entry align="center">27.72</entry>
<entry align="center">133</entry>
<entry align="center">IMQPVKDLL</entry>
<entry align="center">45</entry>
<entry align="center">10.08</entry></row></tbody></tgroup>
<tgroup cols="8" rowsep="0">
<colspec colnum="1" colname="col1" colwidth="20mm"/>
<colspec colnum="2" colname="col2" colwidth="29mm"/>
<colspec colnum="3" colname="col3" colwidth="16mm"/>
<colspec colnum="4" colname="col4" colwidth="19mm"/>
<colspec colnum="5" colname="col5" colwidth="20mm"/>
<colspec colnum="6" colname="col6" colwidth="29mm"/>
<colspec colnum="7" colname="col7" colwidth="16mm"/>
<colspec colnum="8" colname="col8" colwidth="19mm"/>
<tbody>
<row>
<entry namest="col1" nameend="col8" align="justify">Start position indicates the number of amino acid from N-terminal of MPHOSPH1. Binding score is derived from "BIMAS" described in Materials and Methods.</entry></row></tbody></tgroup>
</table>
</tables></p>
<p id="p0084" num="0084">
<tables id="tabl0003" num="0003">
<table frame="bottom">
<title>[Table 2B]</title>
<tgroup cols="8" colsep="0">
<colspec colnum="1" colname="col1" colwidth="20mm"/>
<colspec colnum="2" colname="col2" colwidth="31mm"/>
<colspec colnum="3" colname="col3" colwidth="15mm"/>
<colspec colnum="4" colname="col4" colwidth="19mm"/>
<colspec colnum="5" colname="col5" colwidth="20mm"/>
<colspec colnum="6" colname="col6" colwidth="30mm"/>
<colspec colnum="7" colname="col7" colwidth="15mm"/>
<colspec colnum="8" colname="col8" colwidth="19mm"/>
<thead>
<row>
<entry namest="col1" nameend="col6" align="center">HLA-A*2402 binding 10-mer peptides derived from <i>MPHOSPH1</i></entry>
<entry/>
<entry/></row>
<row>
<entry align="center">Start Position</entry>
<entry align="center">Amino Acid Sequence</entry>
<entry align="center">SEQ ID NO.</entry>
<entry align="center">Binding Score</entry>
<entry align="center">Start Position</entry>
<entry align="center">Amino Acid Sequence</entry>
<entry align="center">SEQ ID NO.</entry>
<entry align="center">Binding</entry></row></thead>
<tbody>
<row rowsep="0">
<entry align="center" valign="bottom">1414</entry>
<entry align="center" valign="bottom">KYNADRKKWL</entry>
<entry align="center" valign="bottom">46</entry>
<entry align="center" valign="bottom">600</entry>
<entry align="center" valign="bottom">1274</entry>
<entry align="center" valign="bottom">KLLRIKINEL</entry>
<entry align="center" valign="bottom">56</entry>
<entry align="center" valign="bottom">15.84</entry></row>
<row rowsep="0">
<entry align="center" valign="bottom">278</entry>
<entry align="center" valign="bottom">IYNEYIYDLF</entry>
<entry align="center" valign="bottom">8</entry>
<entry align="center" valign="bottom">252</entry>
<entry align="center" valign="bottom">1332</entry>
<entry align="center" valign="bottom">KIIEDMRMTL</entry>
<entry align="center" valign="bottom">57</entry>
<entry align="center" valign="bottom">14.4</entry></row>
<row rowsep="0">
<entry align="center" valign="bottom">1446</entry>
<entry align="center" valign="bottom">KYAEDRERFF</entry>
<entry align="center" valign="bottom">47</entry>
<entry align="center" valign="bottom">240</entry>
<entry align="center" valign="bottom">1299</entry>
<entry align="center" valign="bottom">RTIQQLKEQL</entry>
<entry align="center" valign="bottom">58</entry>
<entry align="center" valign="bottom">14.4</entry></row>
<row rowsep="0">
<entry align="center" valign="bottom">611</entry>
<entry align="center" valign="bottom">QYWAQREADF</entry>
<entry align="center" valign="bottom">48</entry>
<entry align="center" valign="bottom">100</entry>
<entry align="center" valign="bottom">1134</entry>
<entry align="center" valign="bottom">KVECSHSAKL</entry>
<entry align="center" valign="bottom">59</entry>
<entry align="center" valign="bottom">13.2</entry></row>
<row rowsep="0">
<entry align="center" valign="bottom">1740</entry>
<entry align="center" valign="bottom">LYTSEISSPI</entry>
<entry align="center" valign="bottom">49</entry>
<entry align="center" valign="bottom">70</entry>
<entry align="center" valign="bottom">859</entry>
<entry align="center" valign="bottom">KNEKEEKAEL</entry>
<entry align="center" valign="bottom">60</entry>
<entry align="center" valign="bottom">13.2</entry></row>
<row rowsep="0">
<entry align="center" valign="bottom">293</entry>
<entry align="center" valign="bottom">KFQKRKMLRL</entry>
<entry align="center" valign="bottom">50</entry>
<entry align="center" valign="bottom">60</entry>
<entry align="center" valign="bottom">586</entry>
<entry align="center" valign="bottom">KLINEKKEKL</entry>
<entry align="center" valign="bottom">61</entry>
<entry align="center" valign="bottom">13.2</entry></row>
<row rowsep="0">
<entry align="center" valign="bottom">849</entry>
<entry align="center" valign="bottom">AFLLTIENEL</entry>
<entry align="center" valign="bottom">51</entry>
<entry align="center" valign="bottom">55.44</entry>
<entry align="center" valign="bottom">943</entry>
<entry align="center" valign="bottom">KLMHTKIDEL</entry>
<entry align="center" valign="bottom">62</entry>
<entry align="center" valign="bottom">13.2</entry></row>
<row rowsep="0">
<entry align="center" valign="bottom">1667</entry>
<entry align="center" valign="bottom">TYSLRSQASI</entry>
<entry align="center" valign="bottom">52</entry>
<entry align="center" valign="bottom">50</entry>
<entry align="center" valign="bottom">838</entry>
<entry align="center" valign="bottom">RVLQENNEGL</entry>
<entry align="center" valign="bottom">63</entry>
<entry align="center" valign="bottom">12</entry></row>
<row rowsep="0">
<entry align="center" valign="bottom">1695</entry>
<entry align="center" valign="bottom">DFLQHSPSIL</entry>
<entry align="center" valign="bottom">53</entry>
<entry align="center" valign="bottom">30</entry>
<entry align="center" valign="bottom">369</entry>
<entry align="center" valign="bottom">RVIRVSELSL</entry>
<entry align="center" valign="bottom">64</entry>
<entry align="center" valign="bottom">12</entry></row>
<row rowsep="0">
<entry align="center" valign="bottom">174</entry>
<entry align="center" valign="bottom">RTLNVLFDSL</entry>
<entry align="center" valign="bottom">54</entry>
<entry align="center" valign="bottom">17.28</entry>
<entry align="center" valign="bottom">1159</entry>
<entry align="center" valign="bottom">RNLKEFQEHL</entry>
<entry align="center" valign="bottom">65</entry>
<entry align="center" valign="bottom">12</entry></row>
<row>
<entry align="center" valign="bottom">870</entry>
<entry align="center" valign="bottom">KOIVHFQQEL</entry>
<entry align="center" valign="bottom">55</entry>
<entry align="center" valign="bottom">15.84</entry>
<entry align="center" valign="bottom">281</entry>
<entry align="center" valign="bottom">EYIYDLFVPV</entry>
<entry align="center" valign="bottom">66</entry>
<entry align="center" valign="bottom">10.8</entry></row></tbody></tgroup>
<tgroup cols="8" rowsep="0">
<colspec colnum="1" colname="col1" colwidth="20mm"/>
<colspec colnum="2" colname="col2" colwidth="31mm"/>
<colspec colnum="3" colname="col3" colwidth="15mm"/>
<colspec colnum="4" colname="col4" colwidth="19mm"/>
<colspec colnum="5" colname="col5" colwidth="20mm"/>
<colspec colnum="6" colname="col6" colwidth="30mm"/>
<colspec colnum="7" colname="col7" colwidth="15mm"/>
<colspec colnum="8" colname="col8" colwidth="19mm"/>
<tbody>
<row>
<entry namest="col1" nameend="col8" align="justify">Start position indicates the number of amino acid from N-terminal of MPHOSPH1. Binding score is derived from "BIMAS" described in Materials and Methods.</entry></row></tbody></tgroup>
</table>
</tables></p>
<p id="p0085" num="0085"><!-- EPO <DP n="35"> -->
<tables id="tabl0004" num="0004">
<table frame="bottom">
<title>[Table 3A]</title>
<tgroup cols="8" colsep="0">
<colspec colnum="1" colname="col1" colwidth="20mm"/>
<colspec colnum="2" colname="col2" colwidth="29mm"/>
<colspec colnum="3" colname="col3" colwidth="16mm"/>
<colspec colnum="4" colname="col4" colwidth="20mm"/>
<colspec colnum="5" colname="col5" colwidth="20mm"/>
<colspec colnum="6" colname="col6" colwidth="29mm"/>
<colspec colnum="7" colname="col7" colwidth="16mm"/>
<colspec colnum="8" colname="col8" colwidth="19mm"/>
<thead>
<row>
<entry namest="col1" nameend="col8" align="left" valign="top">HLA-A*0201 binding 9-mer peptides derived from <i>MPHOSPH1</i></entry></row>
<row>
<entry align="center" valign="top">Start Position</entry>
<entry align="center" valign="top">Amino Acid Sequence</entry>
<entry align="center" valign="top">SEQ ID NO.</entry>
<entry align="center" valign="top">Binding Score</entry>
<entry align="center" valign="top">Start Position</entry>
<entry align="center" valign="top">Amino Acid Sequence</entry>
<entry align="center" valign="top">SEQ ID NO.</entry>
<entry align="center" valign="top">Binding Score</entry></row></thead>
<tbody>
<row rowsep="0">
<entry align="right">575</entry>
<entry align="center">KLLDLIEDL</entry>
<entry align="center">31</entry>
<entry align="center">1278.29</entry>
<entry align="right">1184</entry>
<entry align="center">KLKEEITQL</entry>
<entry align="center">93</entry>
<entry align="center">24.677</entry></row>
<row rowsep="0">
<entry align="right">282</entry>
<entry align="center">YIYDLFVPV</entry>
<entry align="center">9</entry>
<entry align="center">1096.62</entry>
<entry align="right">888</entry>
<entry align="center">TLSKEVQQI</entry>
<entry align="center">94</entry>
<entry align="center">23.995</entry></row>
<row rowsep="0">
<entry align="right">298</entry>
<entry align="center">KMLRLSQDV</entry>
<entry align="center">67</entry>
<entry align="center">650.504</entry>
<entry align="right">280</entry>
<entry align="center">NEYIYDLFV</entry>
<entry align="center">95</entry>
<entry align="center">23.802</entry></row>
<row rowsep="0">
<entry align="right">218</entry>
<entry align="center">ALLRQIKEV</entry>
<entry align="center">68</entry>
<entry align="center">591.888</entry>
<entry align="right">552</entry>
<entry align="center">LLDEDLDKT</entry>
<entry align="center">96</entry>
<entry align="center">23.415</entry></row>
<row rowsep="0">
<entry align="right">850</entry>
<entry align="center">FLLTIENEL</entry>
<entry align="center">42</entry>
<entry align="center">363.588</entry>
<entry align="right">461</entry>
<entry align="center">LAYDETLNV</entry>
<entry align="center">97</entry>
<entry align="center">21.546</entry></row>
<row rowsep="0">
<entry align="right">1108</entry>
<entry align="center">ALSELTQGV</entry>
<entry align="center">69</entry>
<entry align="center">285.163</entry>
<entry align="right">980</entry>
<entry align="center">NLPNTQLDL</entry>
<entry align="center">98</entry>
<entry align="center">21.362</entry></row>
<row rowsep="0">
<entry align="right">331</entry>
<entry align="center">KLGIKHOSV</entry>
<entry align="center">70</entry>
<entry align="center">243.432</entry>
<entry align="right">409</entry>
<entry align="center">TLGKCINVL</entry>
<entry align="center">99</entry>
<entry align="center">20.145</entry></row>
<row rowsep="0">
<entry align="right">1689</entry>
<entry align="center">TLQKFGDFL</entry>
<entry align="center">71</entry>
<entry align="center">218.772</entry>
<entry align="right">175</entry>
<entry align="center">TLNVLFDSL</entry>
<entry align="center">100</entry>
<entry align="center">19.888</entry></row>
<row rowsep="0">
<entry align="right">1251</entry>
<entry align="center">KLTDAKKQI</entry>
<entry align="center">72</entry>
<entry align="center">149.711</entry>
<entry align="right">923</entry>
<entry align="center">KLSNEIETA</entry>
<entry align="center">101</entry>
<entry align="center">19.596</entry></row>
<row rowsep="0">
<entry align="right">638</entry>
<entry align="center">RLAIFKDLV</entry>
<entry align="center">10</entry>
<entry align="center">129.506</entry>
<entry align="right">1389</entry>
<entry align="center">KEHENNTDV</entry>
<entry align="center">102</entry>
<entry align="center">19.407</entry></row>
<row rowsep="0">
<entry align="right">1467</entry>
<entry align="center">QLTEKDSDL</entry>
<entry align="center">73</entry>
<entry align="center">87.586</entry>
<entry align="right">987</entry>
<entry align="center">DLLGNDYLV</entry>
<entry align="center">103</entry>
<entry align="center">19.301</entry></row>
<row rowsep="0">
<entry align="right">1195</entry>
<entry align="center">NLQDMKHLL</entry>
<entry align="center">74</entry>
<entry align="center">87.586</entry>
<entry align="right">920</entry>
<entry align="center">KIMKLSNEI</entry>
<entry align="center">104</entry>
<entry align="center">18.577</entry></row>
<row rowsep="0">
<entry align="right">270</entry>
<entry align="center">SVWVSFFEI</entry>
<entry align="center">75</entry>
<entry align="center">83.497</entry>
<entry align="right">1703</entry>
<entry align="center">ILQSKAKKI</entry>
<entry align="center">105</entry>
<entry align="center">17.736</entry></row>
<row rowsep="0">
<entry align="right">129</entry>
<entry align="center">FQGCIMQPV</entry>
<entry align="center">76</entry>
<entry align="center">74.608</entry>
<entry align="right">512</entry>
<entry align="center">ILNVKRATI</entry>
<entry align="center">106</entry>
<entry align="center">17.736</entry></row>
<row rowsep="0">
<entry align="right">839</entry>
<entry align="center">VLQENNEGL</entry>
<entry align="center">77</entry>
<entry align="center">72.959</entry>
<entry align="right">1124</entry>
<entry align="center">KELETILET</entry>
<entry align="center">107</entry>
<entry align="center">17.695</entry></row>
<row rowsep="0">
<entry align="right">1094</entry>
<entry align="center">TLDVQIQHV</entry>
<entry align="center">78</entry>
<entry align="center">63.988</entry>
<entry align="right">453</entry>
<entry align="center">IVNISQCYL</entry>
<entry align="center">108</entry>
<entry align="center">17.477</entry></row>
<row rowsep="0">
<entry align="right">1019</entry>
<entry align="center">AIWEECKEI</entry>
<entry align="center">79</entry>
<entry align="center">48.816</entry>
<entry align="right">771</entry>
<entry align="center">UCNETVEV</entry>
<entry align="center">109</entry>
<entry align="center">16.258</entry></row>
<row rowsep="0">
<entry align="right">1696</entry>
<entry align="center">FLQHSPSIL</entry>
<entry align="center">80</entry>
<entry align="center">40.289</entry>
<entry align="right">623</entry>
<entry align="center">TLLQEREIL</entry>
<entry align="center">110</entry>
<entry align="center">15.879</entry></row>
<row rowsep="0">
<entry align="right">528</entry>
<entry align="center">DLMEDEDLV</entry>
<entry align="center">81</entry>
<entry align="center">38.775</entry>
<entry align="right">560</entry>
<entry align="center">TLEENKAFI</entry>
<entry align="center">111</entry>
<entry align="center">15.057</entry></row>
<row rowsep="0">
<entry align="right">406</entry>
<entry align="center">SLLTLGKCI</entry>
<entry align="center">82</entry>
<entry align="center">38.601</entry>
<entry align="right">1415</entry>
<entry align="center">YNADRKKWL</entry>
<entry align="center">112</entry>
<entry align="center">14.465</entry></row>
<row rowsep="0">
<entry align="right">1400</entry>
<entry align="center">KLTNLQDEL</entry>
<entry align="center">44</entry>
<entry align="center">36.637</entry>
<entry align="right">307</entry>
<entry align="center">KGYSFIKDL</entry>
<entry align="center">113</entry>
<entry align="center">13.65</entry></row>
<row rowsep="0">
<entry align="right">170</entry>
<entry align="center">GILPRTLNV</entry>
<entry align="center">83</entry>
<entry align="center">35.385</entry>
<entry align="right">133</entry>
<entry align="center">IMQPVKDLL</entry>
<entry align="center">45</entry>
<entry align="center">12.852</entry></row>
<row rowsep="0">
<entry align="right">171</entry>
<entry align="center">ILPRTLNVL</entry>
<entry align="center">84</entry>
<entry align="center">34.246</entry>
<entry align="right">1594</entry>
<entry align="center">KMAVKHPGC</entry>
<entry align="center">114</entry>
<entry align="center">12.558</entry></row>
<row rowsep="0">
<entry align="right">786</entry>
<entry align="center">KICSERKRV</entry>
<entry align="center">85</entry>
<entry align="center">33.472</entry>
<entry align="right">365</entry>
<entry align="center">SEMSRVIRV</entry>
<entry align="center">115</entry>
<entry align="center">11.509</entry></row>
<row rowsep="0">
<entry align="right">880</entry>
<entry align="center">SLSEKKNLT</entry>
<entry align="center">86</entry>
<entry align="center">30.553</entry>
<entry align="right">1191</entry>
<entry align="center">QLTNNLQDM</entry>
<entry align="center">116</entry>
<entry align="center">11.426</entry></row>
<row rowsep="0">
<entry align="right">944</entry>
<entry align="center">LMHTKIDEL</entry>
<entry align="center">87</entry>
<entry align="center">29.559</entry>
<entry align="right">871</entry>
<entry align="center">QIVHFQQEL</entry>
<entry align="center">117</entry>
<entry align="center">11.162</entry></row>
<row rowsep="0">
<entry align="right">1422</entry>
<entry align="center">WLEEKMMU</entry>
<entry align="center">88</entry>
<entry align="center">28.963</entry>
<entry align="right">245</entry>
<entry align="center">NISEFEESI</entry>
<entry align="center">118</entry>
<entry align="center">10.951</entry></row>
<row rowsep="0">
<entry align="right">466</entry>
<entry align="center">TLNVLKFSA</entry>
<entry align="center">89</entry>
<entry align="center">28.814</entry>
<entry align="right">484</entry>
<entry align="center">TLNSSQEKL</entry>
<entry align="center">119</entry>
<entry align="center">10.468</entry></row>
<row rowsep="0">
<entry align="right">1539</entry>
<entry align="center">KLQTEPLST</entry>
<entry align="center">90</entry>
<entry align="center">26.082</entry>
<entry align="right">764</entry>
<entry align="center">SLIINNKLI</entry>
<entry align="center">120</entry>
<entry align="center">10.433</entry></row>
<row rowsep="0">
<entry align="right">132</entry>
<entry align="center">CIMQPVKDL</entry>
<entry align="center">91</entry>
<entry align="center">24.997</entry>
<entry align="right">587</entry>
<entry align="center">UNEKKEKL</entry>
<entry align="center">121</entry>
<entry align="center">10.032</entry></row>
<row>
<entry align="right">1260</entry>
<entry align="center">KQVQKEVSV</entry>
<entry align="center">92</entry>
<entry align="center">24.681</entry>
<entry align="right"/>
<entry align="center"/>
<entry align="center"/>
<entry align="center"/></row></tbody></tgroup>
<tgroup cols="8" rowsep="0">
<colspec colnum="1" colname="col1" colwidth="20mm"/>
<colspec colnum="2" colname="col2" colwidth="29mm"/>
<colspec colnum="3" colname="col3" colwidth="16mm"/>
<colspec colnum="4" colname="col4" colwidth="20mm"/>
<colspec colnum="5" colname="col5" colwidth="20mm"/>
<colspec colnum="6" colname="col6" colwidth="29mm"/>
<colspec colnum="7" colname="col7" colwidth="16mm"/>
<colspec colnum="8" colname="col8" colwidth="19mm"/>
<tbody>
<row>
<entry namest="col1" nameend="col8" align="justify">Start position indicates the number of amino acid from N-terminal of MPHOSPH1. Binding score is derived from "BIMAS" described in Materials and Methods.</entry></row></tbody></tgroup>
</table>
</tables></p>
<p id="p0086" num="0086"><!-- EPO <DP n="36"> -->
<tables id="tabl0005" num="0005">
<table frame="bottom">
<title>[Table 3B]</title>
<tgroup cols="8" colsep="0">
<colspec colnum="1" colname="col1" colwidth="20mm"/>
<colspec colnum="2" colname="col2" colwidth="30mm"/>
<colspec colnum="3" colname="col3" colwidth="15mm"/>
<colspec colnum="4" colname="col4" colwidth="20mm"/>
<colspec colnum="5" colname="col5" colwidth="20mm"/>
<colspec colnum="6" colname="col6" colwidth="30mm"/>
<colspec colnum="7" colname="col7" colwidth="15mm"/>
<colspec colnum="8" colname="col8" colwidth="19mm"/>
<thead>
<row>
<entry namest="col1" nameend="col8" align="left">HLA-A*0201 binding 10-mer peptides derived from <i>MPHOSPH1</i></entry></row>
<row>
<entry align="center">Start Position</entry>
<entry align="center">Amino Acid Sequence</entry>
<entry align="center">SEQ ID NO.</entry>
<entry align="center">Binding Score</entry>
<entry align="center">Start Position</entry>
<entry align="center">Amino Acid Sequence</entry>
<entry align="center">SEQ ID NO.</entry>
<entry align="center">Binding</entry></row></thead>
<tbody>
<row rowsep="0">
<entry align="right" valign="bottom">1274</entry>
<entry align="center" valign="bottom">KLLRIKINEL</entry>
<entry align="center" valign="bottom">56</entry>
<entry align="center" valign="bottom">626.279</entry>
<entry align="right" valign="bottom">1318</entry>
<entry align="center" valign="bottom">QQYERACKDL</entry>
<entry align="center" valign="bottom">140</entry>
<entry align="right" valign="bottom">28.417</entry></row>
<row rowsep="0">
<entry align="right" valign="bottom">551</entry>
<entry align="center" valign="bottom">KLLDEDLDKT</entry>
<entry align="center" valign="bottom">122</entry>
<entry align="center" valign="bottom">445.913</entry>
<entry align="right" valign="bottom">452</entry>
<entry align="center" valign="bottom">MIVNISQCYL</entry>
<entry align="center" valign="bottom">141</entry>
<entry align="right" valign="bottom">27.464</entry></row>
<row rowsep="0">
<entry align="right" valign="bottom">460</entry>
<entry align="center" valign="bottom">YLAYDETLNV</entry>
<entry align="center" valign="bottom">123</entry>
<entry align="center" valign="bottom">319.939</entry>
<entry align="right" valign="bottom">923</entry>
<entry align="center" valign="bottom">KLSNEIETAT</entry>
<entry align="center" valign="bottom">142</entry>
<entry align="right" valign="bottom">26.082</entry></row>
<row rowsep="0">
<entry align="right" valign="bottom">943</entry>
<entry align="center" valign="bottom">KLMHTKIDEL</entry>
<entry align="center" valign="bottom">62</entry>
<entry align="center" valign="bottom">311.777</entry>
<entry align="right" valign="bottom">1257</entry>
<entry align="center" valign="bottom">KQIKQVQKEV</entry>
<entry align="center" valign="bottom">143</entry>
<entry align="right" valign="bottom">24.681</entry></row>
<row rowsep="0">
<entry align="right" valign="bottom">262</entry>
<entry align="center" valign="bottom">NMANSIKFSV</entry>
<entry align="center" valign="bottom">124</entry>
<entry align="center" valign="bottom">291.346</entry>
<entry align="right" valign="bottom">980</entry>
<entry align="center" valign="bottom">NLPNTQLDLL</entry>
<entry align="center" valign="bottom">144</entry>
<entry align="right" valign="bottom">24.075</entry></row>
<row rowsep="0">
<entry align="right" valign="bottom">178</entry>
<entry align="center" valign="bottom">VLFDSLQERL</entry>
<entry align="center" valign="bottom">125</entry>
<entry align="center" valign="bottom">269.948</entry>
<entry align="right" valign="bottom">985</entry>
<entry align="center" valign="bottom">QLDLLGNDYL</entry>
<entry align="center" valign="bottom">145</entry>
<entry align="right" valign="bottom">23.029</entry></row>
<row rowsep="0">
<entry align="right" valign="bottom">770</entry>
<entry align="center" valign="bottom">KLICNETVEV</entry>
<entry align="center" valign="bottom">126</entry>
<entry align="center" valign="bottom">243.432</entry>
<entry align="right" valign="bottom">1427</entry>
<entry align="center" valign="bottom">MMLITQAKEA</entry>
<entry align="center" valign="bottom">146</entry>
<entry align="right" valign="bottom">22.569</entry></row>
<row rowsep="0">
<entry align="right" valign="bottom">34</entry>
<entry align="center" valign="bottom">KLDLSHEFSL</entry>
<entry align="center" valign="bottom">127</entry>
<entry align="center" valign="bottom">173.463</entry>
<entry align="right" valign="bottom">1523</entry>
<entry align="center" valign="bottom">QIMDIKPKRI</entry>
<entry align="center" valign="bottom">147</entry>
<entry align="right" valign="bottom">21.762</entry></row>
<row rowsep="0">
<entry align="right" valign="bottom">407</entry>
<entry align="center" valign="bottom">LLTLGKCINV</entry>
<entry align="center" valign="bottom">128</entry>
<entry align="center" valign="bottom">118.238</entry>
<entry align="right" valign="bottom">1484</entry>
<entry align="center" valign="bottom">QLVAALEIQL</entry>
<entry align="center" valign="bottom">148</entry>
<entry align="right" valign="bottom">21.362</entry></row>
<row rowsep="0">
<entry align="right" valign="bottom">1714</entry>
<entry align="center" valign="bottom">TMSSSKLSNV</entry>
<entry align="center" valign="bottom">11</entry>
<entry align="center" valign="bottom">115.534</entry>
<entry align="right" valign="bottom">466</entry>
<entry align="center" valign="bottom">TLNVLKFSAI</entry>
<entry align="center" valign="bottom">149</entry>
<entry align="right" valign="bottom">19.822</entry></row>
<row rowsep="0">
<entry align="right" valign="bottom">1353</entry>
<entry align="center" valign="bottom">QVLEAKLEEV</entry>
<entry align="center" valign="bottom">129</entry>
<entry align="center" valign="bottom">104.046</entry>
<entry align="right" valign="bottom">511</entry>
<entry align="center" valign="bottom">KILNVKRATI</entry>
<entry align="center" valign="bottom">150</entry>
<entry align="right" valign="bottom">18.577</entry></row>
<row rowsep="0">
<entry align="right" valign="bottom">880</entry>
<entry align="center" valign="bottom">SLSEKKNLTL</entry>
<entry align="center" valign="bottom">130</entry>
<entry align="center" valign="bottom">87.586</entry>
<entry align="right" valign="bottom">1340</entry>
<entry align="center" valign="bottom">TLEEQEQTQV</entry>
<entry align="center" valign="bottom">151</entry>
<entry align="right" valign="bottom">18.25</entry></row>
<row rowsep="0">
<entry align="right" valign="bottom">235</entry>
<entry align="center" valign="bottom">TLYGSLTNSL</entry>
<entry align="center" valign="bottom">131</entry>
<entry align="center" valign="bottom">68.36</entry>
<entry align="right" valign="bottom">372</entry>
<entry align="center" valign="bottom">RVSELSLCDL</entry>
<entry align="center" valign="bottom">152</entry>
<entry align="right" valign="bottom">17.627</entry></row>
<row rowsep="0">
<entry align="right" valign="bottom">1019</entry>
<entry align="center" valign="bottom">AIWEECKEIV</entry>
<entry align="center" valign="bottom">132</entry>
<entry align="center" valign="bottom">65.381</entry>
<entry align="right" valign="bottom">1561</entry>
<entry align="center" valign="bottom">VVLDSCEVST</entry>
<entry align="center" valign="bottom">153</entry>
<entry align="right" valign="bottom">16.816</entry></row>
<row rowsep="0">
<entry align="right" valign="bottom">552</entry>
<entry align="center" valign="bottom">LLDEDLDKTL</entry>
<entry align="center" valign="bottom">133</entry>
<entry align="center" valign="bottom">59.558</entry>
<entry align="right" valign="bottom">309</entry>
<entry align="center" valign="bottom">YSFIKDLQWI</entry>
<entry align="center" valign="bottom">154</entry>
<entry align="right" valign="bottom">14.663</entry></row>
<row rowsep="0">
<entry align="right" valign="bottom">1093</entry>
<entry align="center" valign="bottom">VTLDVQIQHV</entry>
<entry align="center" valign="bottom">134</entry>
<entry align="center" valign="bottom">57.298</entry>
<entry align="right" valign="bottom">353</entry>
<entry align="center" valign="bottom">SIFTVKILQI</entry>
<entry align="center" valign="bottom">155</entry>
<entry align="right" valign="bottom">12.208</entry></row>
<row rowsep="0">
<entry align="right" valign="bottom">559</entry>
<entry align="center" valign="bottom">KTLEENKAFI</entry>
<entry align="center" valign="bottom">135</entry>
<entry align="center" valign="bottom">42.314</entry>
<entry align="right" valign="bottom">1094</entry>
<entry align="center" valign="bottom">TLDVQIQHVV</entry>
<entry align="center" valign="bottom">156</entry>
<entry align="right" valign="bottom">11.407</entry></row>
<row rowsep="0">
<entry align="right" valign="bottom">1332</entry>
<entry align="center" valign="bottom">KIIEDMRMTL</entry>
<entry align="center" valign="bottom">57</entry>
<entry align="center" valign="bottom">42.151</entry>
<entry align="right" valign="bottom">1688</entry>
<entry align="center" valign="bottom">GTLQKFGDFL</entry>
<entry align="center" valign="bottom">157</entry>
<entry align="right" valign="bottom">11.242</entry></row>
<row rowsep="0">
<entry align="right" valign="bottom">152</entry>
<entry align="center" valign="bottom">GLTNSGKTYT</entry>
<entry align="center" valign="bottom">136</entry>
<entry align="center" valign="bottom">40.986</entry>
<entry align="right" valign="bottom">311</entry>
<entry align="center" valign="bottom">FIKDLQWIQV</entry>
<entry align="center" valign="bottom">158</entry>
<entry align="right" valign="bottom">10.732</entry></row>
<row rowsep="0">
<entry align="right" valign="bottom">830</entry>
<entry align="center" valign="bottom">NIAEIEDIRV</entry>
<entry align="center" valign="bottom">137</entry>
<entry align="center" valign="bottom">39.21</entry>
<entry align="right" valign="bottom">1079</entry>
<entry align="center" valign="bottom">TLIQQLKEEL</entry>
<entry align="center" valign="bottom">159</entry>
<entry align="right" valign="bottom">10.468</entry></row>
<row rowsep="0">
<entry align="right" valign="bottom">586</entry>
<entry align="center" valign="bottom">KLINEKKEKL</entry>
<entry align="center" valign="bottom">61</entry>
<entry align="center" valign="bottom">36.637</entry>
<entry align="right" valign="bottom">1128</entry>
<entry align="center" valign="bottom">TILETQKVEC</entry>
<entry align="center" valign="bottom">160</entry>
<entry align="right" valign="bottom">10.363</entry></row>
<row rowsep="0">
<entry align="right" valign="bottom">182</entry>
<entry align="center" valign="bottom">SLQERLYTKM</entry>
<entry align="center" valign="bottom">138</entry>
<entry align="center" valign="bottom">30.553</entry>
<entry align="right" valign="bottom">1487</entry>
<entry align="center" valign="bottom">AALEIQLKAL</entry>
<entry align="center" valign="bottom">161</entry>
<entry align="right" valign="bottom">10.352</entry></row>
<row rowsep="0">
<entry align="right" valign="bottom">1043</entry>
<entry align="center" valign="bottom">QQIEKLQAEV</entry>
<entry align="center" valign="bottom">139</entry>
<entry align="center" valign="bottom">28.912</entry>
<entry align="right" valign="bottom">170</entry>
<entry align="center" valign="bottom">GILPRTLNVL</entry>
<entry align="center" valign="bottom">162</entry>
<entry align="right" valign="bottom">10.249</entry></row>
<row>
<entry align="right" valign="bottom">870</entry>
<entry align="center" valign="bottom">KQIVHFQQEL</entry>
<entry align="center" valign="bottom">55</entry>
<entry align="center" valign="bottom">28.807</entry>
<entry align="right" valign="bottom"/>
<entry align="center" valign="bottom"/>
<entry align="center" valign="bottom"/>
<entry align="center" valign="bottom"/></row></tbody></tgroup>
<tgroup cols="8" rowsep="0">
<colspec colnum="1" colname="col1" colwidth="20mm"/>
<colspec colnum="2" colname="col2" colwidth="30mm"/>
<colspec colnum="3" colname="col3" colwidth="15mm"/>
<colspec colnum="4" colname="col4" colwidth="20mm"/>
<colspec colnum="5" colname="col5" colwidth="20mm"/>
<colspec colnum="6" colname="col6" colwidth="30mm"/>
<colspec colnum="7" colname="col7" colwidth="15mm"/>
<colspec colnum="8" colname="col8" colwidth="19mm"/>
<tbody>
<row>
<entry namest="col1" nameend="col8" align="justify">Start position indicates the number of amino acid from N-terminal of MPHOSPH 1. Binding score is derived from "BIMAS" described in Materials and Methods.</entry></row></tbody></tgroup>
</table>
</tables></p>
<p id="p0087" num="0087">
<tables id="tabl0006" num="0006">
<table frame="bottom">
<title>[Table 4A]</title>
<tgroup cols="8" colsep="0">
<colspec colnum="1" colname="col1" colwidth="20mm"/>
<colspec colnum="2" colname="col2" colwidth="28mm"/>
<colspec colnum="3" colname="col3" colwidth="18mm"/>
<colspec colnum="4" colname="col4" colwidth="18mm"/>
<colspec colnum="5" colname="col5" colwidth="20mm"/>
<colspec colnum="6" colname="col6" colwidth="28mm"/>
<colspec colnum="7" colname="col7" colwidth="18mm"/>
<colspec colnum="8" colname="col8" colwidth="20mm"/>
<thead>
<row>
<entry namest="col1" nameend="col8" align="left" valign="top">HLA-A*2402 binding 9-mer peptides derived from <i>DEPDC1</i></entry></row>
<row>
<entry align="center" valign="top">Start Position</entry>
<entry align="center" valign="top">Amino Acid Sequence</entry>
<entry align="center" valign="top">SEQ ID NO.</entry>
<entry align="center" valign="top">Birding Score</entry>
<entry align="center" valign="top">Start Position</entry>
<entry align="center" valign="top">Amino Acid Sequence</entry>
<entry align="center" valign="top">SEQ ID NO.</entry>
<entry align="center" valign="top">Binding Score</entry></row></thead>
<tbody>
<row rowsep="0">
<entry align="right">295</entry>
<entry align="center">YYELFVNIL</entry>
<entry align="center">163</entry>
<entry align="center">360</entry>
<entry align="right">505</entry>
<entry align="center">KQLCRSQSL</entry>
<entry align="center">167</entry>
<entry align="center">14.4</entry></row>
<row rowsep="0">
<entry align="right">294</entry>
<entry align="center">EYYELFVNI</entry>
<entry align="center">12</entry>
<entry align="center">86.4</entry>
<entry align="right">275</entry>
<entry align="center">VFRTIADYF</entry>
<entry align="center">168</entry>
<entry align="center">14</entry></row>
<row rowsep="0">
<entry align="right">282</entry>
<entry align="center">YFLDLPEPL</entry>
<entry align="center">164</entry>
<entry align="center">43.2</entry>
<entry align="right">36</entry>
<entry align="center">HFKKYGNCF</entry>
<entry align="center">169</entry>
<entry align="center">12</entry></row>
<row rowsep="0">
<entry align="right">118</entry>
<entry align="center">RYPELRKNN</entry>
<entry align="center">165</entry>
<entry align="center">21.8</entry>
<entry align="right">307</entry>
<entry align="center">GYITVSDRS</entry>
<entry align="center">170</entry>
<entry align="center">10.5</entry></row>
<row>
<entry align="right">338</entry>
<entry align="center">SFKSTECLL</entry>
<entry align="center">166</entry>
<entry align="center">20</entry>
<entry align="right">298</entry>
<entry align="center">LFVNILGLL</entry>
<entry align="center">171</entry>
<entry align="center">42</entry></row></tbody></tgroup>
<tgroup cols="8" rowsep="0">
<colspec colnum="1" colname="col1" colwidth="20mm"/>
<colspec colnum="2" colname="col2" colwidth="28mm"/>
<colspec colnum="3" colname="col3" colwidth="18mm"/>
<colspec colnum="4" colname="col4" colwidth="18mm"/>
<colspec colnum="5" colname="col5" colwidth="20mm"/>
<colspec colnum="6" colname="col6" colwidth="28mm"/>
<colspec colnum="7" colname="col7" colwidth="18mm"/>
<colspec colnum="8" colname="col8" colwidth="20mm"/>
<tbody>
<row>
<entry namest="col1" nameend="col8" align="justify">Start position indicates the number of amino acid from N-terminal of DEPDC1. Binding score is derived from "BIMAS" described in Materials and Methods.</entry></row></tbody></tgroup>
</table>
</tables></p>
<p id="p0088" num="0088"><!-- EPO <DP n="37"> -->
<tables id="tabl0007" num="0007">
<table frame="all">
<title>[Table 4B]</title>
<tgroup cols="9">
<colspec colnum="1" colname="col1" colwidth="19mm"/>
<colspec colnum="2" colname="col2" colwidth="29mm"/>
<colspec colnum="3" colname="col3" colwidth="14mm"/>
<colspec colnum="4" colname="col4" colwidth="18mm"/>
<colspec colnum="5" colname="col5" colwidth="9mm"/>
<colspec colnum="6" colname="col6" colwidth="19mm"/>
<colspec colnum="7" colname="col7" colwidth="29mm"/>
<colspec colnum="8" colname="col8" colwidth="14mm"/>
<colspec colnum="9" colname="col9" colwidth="18mm"/>
<thead>
<row>
<entry namest="col1" nameend="col9" align="left" valign="top">HLA-A*2402 binding 10-mer peptidesp derived from <i>DEPDCI</i></entry></row>
<row>
<entry align="center" valign="top">Start Position</entry>
<entry align="center" valign="top">Amino Acid Sequence</entry>
<entry align="center" valign="top">SRQ ID NO.</entry>
<entry align="center" valign="top">Binding Score</entry>
<entry align="center" valign="top"/>
<entry align="center" valign="top">Start Position</entry>
<entry align="center" valign="top">Amino Acid Sequence</entry>
<entry align="center" valign="top">SRQ ID NO.</entry>
<entry align="center" valign="top">Binding Score</entry></row></thead>
<tbody>
<row>
<entry align="right">294</entry>
<entry align="center">EYYELFVNIL</entry>
<entry align="center">172</entry>
<entry align="center">288</entry>
<entry align="center"/>
<entry align="right">275</entry>
<entry align="center">VFRTIADYFL</entry>
<entry align="center">182</entry>
<entry align="center">20</entry></row>
<row>
<entry align="right">281</entry>
<entry align="center">DYFLDLPEPL</entry>
<entry align="center">173</entry>
<entry align="center">240</entry>
<entry align="center"/>
<entry align="right">113</entry>
<entry align="center">KTLPRRYPEL</entry>
<entry align="center">183</entry>
<entry align="center">15.84</entry></row>
<row>
<entry align="right">118</entry>
<entry align="center">RYPELRKNNI</entry>
<entry align="center">174</entry>
<entry align="center">216</entry>
<entry align="center"/>
<entry align="right">277</entry>
<entry align="center">RTIADYFLDL</entry>
<entry align="center">184</entry>
<entry align="center">14.4</entry></row>
<row>
<entry align="right">770</entry>
<entry align="center">EYPLIYQKRF</entry>
<entry align="center">175</entry>
<entry align="center">150</entry>
<entry align="center"/>
<entry align="right">270</entry>
<entry align="center">GFERDVFRTI</entry>
<entry align="center">185</entry>
<entry align="center">12.6</entry></row>
<row>
<entry align="right">267</entry>
<entry align="center">TYVGFERDVF</entry>
<entry align="center">176</entry>
<entry align="center">150</entry>
<entry align="center"/>
<entry align="right">146</entry>
<entry align="center">RTPKRHGLHL</entry>
<entry align="center">186</entry>
<entry align="center">12</entry></row>
<row>
<entry align="right">523</entry>
<entry align="center">SYINTPVAEI</entry>
<entry align="center">177</entry>
<entry align="center">82.5</entry>
<entry align="center"/>
<entry align="right">505</entry>
<entry align="center">KQLCRSQSLL</entry>
<entry align="center">187</entry>
<entry align="center">12</entry></row>
<row>
<entry align="right">282</entry>
<entry align="center">YFLDLPEPLL</entry>
<entry align="center">178</entry>
<entry align="center">36</entry>
<entry align="center"/>
<entry align="right">340</entry>
<entry align="center">KSTECLLLSL</entry>
<entry align="center">188</entry>
<entry align="center">11.52</entry></row>
<row>
<entry align="right">191</entry>
<entry align="center">RYVILIYLQT</entry>
<entry align="center">179</entry>
<entry align="center">21</entry>
<entry align="center"/>
<entry align="right">295</entry>
<entry align="center">YYELFVNILV</entry>
<entry align="center">189</entry>
<entry align="center">10.5</entry></row>
<row>
<entry align="right">338</entry>
<entry align="center">SFKSTECLLL</entry>
<entry align="center">180</entry>
<entry align="center">20</entry>
<entry align="center"/>
<entry align="right">129</entry>
<entry align="center">NFSKDKDSIF</entry>
<entry align="center">190</entry>
<entry align="center">10</entry></row>
<row>
<entry align="right">103</entry>
<entry align="center">LFRFPATSPL</entry>
<entry align="center">181</entry>
<entry align="center">20</entry>
<entry align="center"/>
<entry align="right"/>
<entry align="center"/>
<entry align="center"/>
<entry align="center"/></row></tbody></tgroup>
<tgroup cols="9" rowsep="0">
<colspec colnum="1" colname="col1" colwidth="19mm"/>
<colspec colnum="2" colname="col2" colwidth="29mm"/>
<colspec colnum="3" colname="col3" colwidth="14mm"/>
<colspec colnum="4" colname="col4" colwidth="18mm"/>
<colspec colnum="5" colname="col5" colwidth="9mm"/>
<colspec colnum="6" colname="col6" colwidth="19mm"/>
<colspec colnum="7" colname="col7" colwidth="29mm"/>
<colspec colnum="8" colname="col8" colwidth="14mm"/>
<colspec colnum="9" colname="col9" colwidth="18mm"/>
<tbody>
<row>
<entry namest="col1" nameend="col9" align="justify">Start position indicates the number of amino acid from N-terminal of DEPDCI. Binding score is derived from "BIMAS" described in Materials and Methods.</entry></row></tbody></tgroup>
</table>
</tables></p>
<p id="p0089" num="0089">
<tables id="tabl0008" num="0008">
<table frame="bottom">
<title>[Table 5A]</title>
<tgroup cols="8" colsep="0">
<colspec colnum="1" colname="col1" colwidth="20mm"/>
<colspec colnum="2" colname="col2" colwidth="29mm"/>
<colspec colnum="3" colname="col3" colwidth="16mm"/>
<colspec colnum="4" colname="col4" colwidth="20mm"/>
<colspec colnum="5" colname="col5" colwidth="20mm"/>
<colspec colnum="6" colname="col6" colwidth="29mm"/>
<colspec colnum="7" colname="col7" colwidth="16mm"/>
<colspec colnum="8" colname="col8" colwidth="19mm"/>
<thead>
<row>
<entry namest="col1" nameend="col8" align="left" valign="top">HLA-A<sup>*</sup>0201 binding 9-mer peptides derived from <i>DEPDCI</i></entry></row>
<row>
<entry align="center" valign="top">Start Position</entry>
<entry align="center" valign="top">Amino Acid Sequence</entry>
<entry align="center" valign="top">SEQ ID NO.</entry>
<entry align="center" valign="top">Binding Score</entry>
<entry align="center" valign="top">Start Position</entry>
<entry align="center" valign="top">Amino Acid Sequence</entry>
<entry align="center" valign="top">SEQ ID NO.</entry>
<entry align="center" valign="top">Binding Score</entry></row></thead>
<tbody>
<row rowsep="0">
<entry align="center">674</entry>
<entry align="center">FLMDHHOEI</entry>
<entry align="center">191</entry>
<entry align="center">728.022</entry>
<entry align="center">563</entry>
<entry align="center">RLCKSTIEL</entry>
<entry align="center">209</entry>
<entry align="center">21.382</entry></row>
<row rowsep="0">
<entry align="center">589</entry>
<entry align="center">LLQPHLERV</entry>
<entry align="center">192</entry>
<entry align="center">133.255</entry>
<entry align="center">506</entry>
<entry align="center">QLCRSQSLL</entry>
<entry align="center">210</entry>
<entry align="center">21.362</entry></row>
<row rowsep="0">
<entry align="center">575</entry>
<entry align="center">SLLPASSML</entry>
<entry align="center">193</entry>
<entry align="center">79.041</entry>
<entry align="center">193</entry>
<entry align="center">VILIYLQTI</entry>
<entry align="center">211</entry>
<entry align="center">20.753</entry></row>
<row rowsep="0">
<entry align="center">246</entry>
<entry align="center">WVLSAMKCL</entry>
<entry align="center">194</entry>
<entry align="center">73.172</entry>
<entry align="center">297</entry>
<entry align="center">ELFVNILVV</entry>
<entry align="center">212</entry>
<entry align="center">18.201</entry></row>
<row rowsep="0">
<entry align="center">619</entry>
<entry align="center">LLMRMISRM</entry>
<entry align="center">195</entry>
<entry align="center">71.872</entry>
<entry align="center">235</entry>
<entry align="center">ILQNKSDDL</entry>
<entry align="center">213</entry>
<entry align="center">17.795</entry></row>
<row rowsep="0">
<entry align="center">581</entry>
<entry align="center">SMLTGTOSL</entry>
<entry align="center">196</entry>
<entry align="center">57.085</entry>
<entry align="center">616</entry>
<entry align="center">KLQLLMRMI</entry>
<entry align="center">214</entry>
<entry align="center">16.797</entry></row>
<row rowsep="0">
<entry align="center">290</entry>
<entry align="center">LLTFEYYEL</entry>
<entry align="center">197</entry>
<entry align="center">54.474</entry>
<entry align="center">623</entry>
<entry align="center">MISRMSQNV</entry>
<entry align="center">215</entry>
<entry align="center">16.258</entry></row>
<row rowsep="0">
<entry align="center">220</entry>
<entry align="center">YIMYNMANT</entry>
<entry align="center">198</entry>
<entry align="center">40.111</entry>
<entry align="center">72</entry>
<entry align="center">TIQLLRKFL</entry>
<entry align="center">216</entry>
<entry align="center">16.155</entry></row>
<row rowsep="0">
<entry align="center">283</entry>
<entry align="center">FLDLPEPLL</entry>
<entry align="center">199</entry>
<entry align="center">39.307</entry>
<entry align="center">421</entry>
<entry align="center">CSLEGIVDV</entry>
<entry align="center">217</entry>
<entry align="center">15.841</entry></row>
<row rowsep="0">
<entry align="center">787</entry>
<entry align="center">ALFGDKPTI</entry>
<entry align="center">200</entry>
<entry align="center">38.601</entry>
<entry align="center">303</entry>
<entry align="center">LVVCGYITV</entry>
<entry align="center">218</entry>
<entry align="center">15.519</entry></row>
<row rowsep="0">
<entry align="center">582</entry>
<entry align="center">MLTGTQSLL</entry>
<entry align="center">201</entry>
<entry align="center">36.316</entry>
<entry align="center">524</entry>
<entry align="center">YINTPVAEI</entry>
<entry align="center">219</entry>
<entry align="center">15.177</entry></row>
<row rowsep="0">
<entry align="center">773</entry>
<entry align="center">LIYQKRFPT</entry>
<entry align="center">202</entry>
<entry align="center">32.33</entry>
<entry align="center">194</entry>
<entry align="center">ILIYLQTIL</entry>
<entry align="center">220</entry>
<entry align="center">14.89</entry></row>
<row rowsep="0">
<entry align="center">114</entry>
<entry align="center">TLPRRYPEL</entry>
<entry align="center">203</entry>
<entry align="center">32.044</entry>
<entry align="center">239</entry>
<entry align="center">KSDDLPHWV</entry>
<entry align="center">221</entry>
<entry align="center">14.333</entry></row>
<row rowsep="0">
<entry align="center">505</entry>
<entry align="center">KQLCRSQSL</entry>
<entry align="center">167</entry>
<entry align="center">28.049</entry>
<entry align="center">576</entry>
<entry align="center">LLPASSMLT</entry>
<entry align="center">222</entry>
<entry align="center">12.668</entry></row>
<row rowsep="0">
<entry align="center">765</entry>
<entry align="center">KQFQKEYPL</entry>
<entry align="center">204</entry>
<entry align="center">28.049</entry>
<entry align="center">646</entry>
<entry align="center">MIHTFSRCV</entry>
<entry align="center">223</entry>
<entry align="center">12.356</entry></row>
<row rowsep="0">
<entry align="center">395</entry>
<entry align="center">IMGGSCHNL</entry>
<entry align="center">205</entry>
<entry align="center">26.228</entry>
<entry align="center">645</entry>
<entry align="center">LMIHTFSRC</entry>
<entry align="center">224</entry>
<entry align="center">11.589</entry></row>
<row rowsep="0">
<entry align="center">296</entry>
<entry align="center">YELFVNILV</entry>
<entry align="center">206</entry>
<entry align="center">23.018</entry>
<entry align="center">653</entry>
<entry align="center">CVLCCAEEV</entry>
<entry align="center">225</entry>
<entry align="center">11.034</entry></row>
<row rowsep="0">
<entry align="center">278</entry>
<entry align="center">TIADYFLDL</entry>
<entry align="center">207</entry>
<entry align="center">22.882</entry>
<entry align="center">297</entry>
<entry align="center">ELFVNILGL</entry>
<entry align="center">226</entry>
<entry align="center">13.635</entry></row>
<row>
<entry align="center">601</entry>
<entry align="center">ALQLCCLLL</entry>
<entry align="center">208</entry>
<entry align="center">21.362</entry>
<entry align="center"/>
<entry align="center"/>
<entry align="center"/>
<entry align="center"/></row></tbody></tgroup>
<tgroup cols="8" rowsep="0">
<colspec colnum="1" colname="col1" colwidth="20mm"/>
<colspec colnum="2" colname="col2" colwidth="29mm"/>
<colspec colnum="3" colname="col3" colwidth="16mm"/>
<colspec colnum="4" colname="col4" colwidth="20mm"/>
<colspec colnum="5" colname="col5" colwidth="20mm"/>
<colspec colnum="6" colname="col6" colwidth="29mm"/>
<colspec colnum="7" colname="col7" colwidth="16mm"/>
<colspec colnum="8" colname="col8" colwidth="19mm"/>
<tbody>
<row>
<entry namest="col1" nameend="col8" align="justify">Start position indicates the number of amino acid from N-terminal of DEPDCI. Binding score is derived from "BIMAS" described in Materials and Methods.</entry></row></tbody></tgroup>
</table>
</tables></p>
<p id="p0090" num="0090"><!-- EPO <DP n="38"> -->
<tables id="tabl0009" num="0009">
<table frame="bottom">
<title>[Table 5B]</title>
<tgroup cols="8" colsep="0">
<colspec colnum="1" colname="col1" colwidth="20mm"/>
<colspec colnum="2" colname="col2" colwidth="30mm"/>
<colspec colnum="3" colname="col3" colwidth="15mm"/>
<colspec colnum="4" colname="col4" colwidth="19mm"/>
<colspec colnum="5" colname="col5" colwidth="20mm"/>
<colspec colnum="6" colname="col6" colwidth="31mm"/>
<colspec colnum="7" colname="col7" colwidth="15mm"/>
<colspec colnum="8" colname="col8" colwidth="19mm"/>
<thead>
<row>
<entry namest="col1" nameend="col8" align="left">hLA-A*0201 binding 10-mer peptides derived from <i>DEPDCI</i></entry></row>
<row>
<entry align="center">Start Position</entry>
<entry align="center">Amino Acid Sequence</entry>
<entry align="center">SEQ ID NO.</entry>
<entry align="center">Binding Score</entry>
<entry align="center">Start Position</entry>
<entry align="center">Amino Acid Sequence</entry>
<entry align="center">SEQ ID NO.</entry>
<entry align="center">Binding</entry></row></thead>
<tbody>
<row rowsep="0">
<entry align="right" valign="bottom">666</entry>
<entry align="center" valign="bottom">LLAGRLVSFL</entry>
<entry align="center" valign="bottom">227</entry>
<entry align="center" valign="bottom">459. 398</entry>
<entry align="right" valign="bottom">575</entry>
<entry align="center" valign="bottom">SLLPASSMLT</entry>
<entry align="center" valign="bottom">241</entry>
<entry align="center" valign="bottom">27. 572</entry></row>
<row rowsep="0">
<entry align="right" valign="bottom">674</entry>
<entry align="center" valign="bottom">FLMDHHQEIL</entry>
<entry align="center" valign="bottom">228</entry>
<entry align="center" valign="bottom">299. 484</entry>
<entry align="right" valign="bottom">296</entry>
<entry align="center" valign="bottom">YELFVNILVV</entry>
<entry align="center" valign="bottom">242</entry>
<entry align="center" valign="bottom">21. 706</entry></row>
<row rowsep="0">
<entry align="right" valign="bottom">588</entry>
<entry align="center" valign="bottom">SLLQPHLERV</entry>
<entry align="center" valign="bottom">229</entry>
<entry align="center" valign="bottom">290. 025</entry>
<entry align="right" valign="bottom">506</entry>
<entry align="center" valign="bottom">QLCRSQSLLL</entry>
<entry align="center" valign="bottom">243</entry>
<entry align="center" valign="bottom">21. 362</entry></row>
<row rowsep="0">
<entry align="right" valign="bottom">302</entry>
<entry align="center" valign="bottom">ILVVCGYITV</entry>
<entry align="center" valign="bottom">230</entry>
<entry align="center" valign="bottom">177. 358</entry>
<entry align="right" valign="bottom">765</entry>
<entry align="center" valign="bottom">KQFQKEYPLI</entry>
<entry align="center" valign="bottom">244</entry>
<entry align="center" valign="bottom">20. 547</entry></row>
<row rowsep="0">
<entry align="right" valign="bottom">291</entry>
<entry align="center" valign="bottom">LTFEYYELFV</entry>
<entry align="center" valign="bottom">231</entry>
<entry align="center" valign="bottom">137. 017</entry>
<entry align="right" valign="bottom">682</entry>
<entry align="center" valign="bottom">ILQVPSYLQT</entry>
<entry align="center" valign="bottom">245</entry>
<entry align="center" valign="bottom">19. 003</entry></row>
<row rowsep="0">
<entry align="right" valign="bottom">201</entry>
<entry align="center" valign="bottom">ILGVPSLEEV</entry>
<entry align="center" valign="bottom">232</entry>
<entry align="center" valign="bottom">133. 255</entry>
<entry align="right" valign="bottom">269</entry>
<entry align="center" valign="bottom">VGFERDVFRT</entry>
<entry align="center" valign="bottom">246</entry>
<entry align="center" valign="bottom">16. 735</entry></row>
<row rowsep="0">
<entry align="right" valign="bottom">195</entry>
<entry align="center" valign="bottom">LIYLQTILGV</entry>
<entry align="center" valign="bottom">233</entry>
<entry align="center" valign="bottom">119. 657</entry>
<entry align="right" valign="bottom">381</entry>
<entry align="center" valign="bottom">QLVNLRNRRV</entry>
<entry align="center" valign="bottom">247</entry>
<entry align="center" valign="bottom">13. 91</entry></row>
<row rowsep="0">
<entry align="right" valign="bottom">688</entry>
<entry align="center" valign="bottom">YLQTAVEKHL</entry>
<entry align="center" valign="bottom">234</entry>
<entry align="center" valign="bottom">98. 267</entry>
<entry align="right" valign="bottom">283</entry>
<entry align="center" valign="bottom">FLDLPEPLLT</entry>
<entry align="center" valign="bottom">248</entry>
<entry align="center" valign="bottom">13. 712</entry></row>
<row rowsep="0">
<entry align="right" valign="bottom">645</entry>
<entry align="center" valign="bottom">LMIHTFSRCV</entry>
<entry align="center" valign="bottom">235</entry>
<entry align="center" valign="bottom">64. 9</entry>
<entry align="right" valign="bottom">395</entry>
<entry align="center" valign="bottom">IMGGSCHNLI</entry>
<entry align="center" valign="bottom">249</entry>
<entry align="center" valign="bottom">12. 809</entry></row>
<row rowsep="0">
<entry align="right" valign="bottom">581</entry>
<entry align="center" valign="bottom">SMLTGTQSLL</entry>
<entry align="center" valign="bottom">236</entry>
<entry align="center" valign="bottom">57. 085</entry>
<entry align="right" valign="bottom">403</entry>
<entry align="center" valign="bottom">LIGLSNMHDL</entry>
<entry align="center" valign="bottom">250</entry>
<entry align="center" valign="bottom">11. 485</entry></row>
<row rowsep="0">
<entry align="right" valign="bottom">622</entry>
<entry align="center" valign="bottom">RMISRMSQNV</entry>
<entry align="center" valign="bottom">237</entry>
<entry align="center" valign="bottom">50. 232</entry>
<entry align="right" valign="bottom">773</entry>
<entry align="center" valign="bottom">LIYQKRFPTT</entry>
<entry align="center" valign="bottom">251</entry>
<entry align="center" valign="bottom">10. 591</entry></row>
<row rowsep="0">
<entry align="right" valign="bottom">618</entry>
<entry align="center" valign="bottom">QLLMRMISRM</entry>
<entry align="center" valign="bottom">238</entry>
<entry align="center" valign="bottom">42. 278</entry>
<entry align="right" valign="bottom">488</entry>
<entry align="center" valign="bottom">TLTVQDQEEL</entry>
<entry align="center" valign="bottom">252</entry>
<entry align="center" valign="bottom">10. 468</entry></row>
<row rowsep="0">
<entry align="right" valign="bottom">654</entry>
<entry align="center" valign="bottom">VLCCAEEVDL</entry>
<entry align="center" valign="bottom">239</entry>
<entry align="center" valign="bottom">36. 316</entry>
<entry align="right" valign="bottom">224</entry>
<entry align="center" valign="bottom">NMANTSKRGV</entry>
<entry align="center" valign="bottom">253</entry>
<entry align="center" valign="bottom">10. 046</entry></row>
<row rowsep="0">
<entry align="right" valign="bottom">644</entry>
<entry align="center" valign="bottom">SLMIHTFSRC</entry>
<entry align="center" valign="bottom">240</entry>
<entry align="center" valign="bottom">34. 925</entry>
<entry align="right" valign="bottom">296</entry>
<entry align="center" valign="bottom">YELFVNILGL</entry>
<entry align="center" valign="bottom">254</entry>
<entry align="center" valign="bottom">16. 26</entry></row>
<row>
<entry align="right" valign="bottom">505</entry>
<entry align="center" valign="bottom">KQLCRSQSLL</entry>
<entry align="center" valign="bottom">187</entry>
<entry align="center" valign="bottom">28. 049</entry>
<entry align="right" valign="bottom">301</entry>
<entry align="center" valign="bottom">NILGLLQPHL</entry>
<entry align="center" valign="bottom">255</entry>
<entry align="center" valign="bottom">10. 868</entry></row></tbody></tgroup>
<tgroup cols="8" rowsep="0">
<colspec colnum="1" colname="col1" colwidth="20mm"/>
<colspec colnum="2" colname="col2" colwidth="30mm"/>
<colspec colnum="3" colname="col3" colwidth="15mm"/>
<colspec colnum="4" colname="col4" colwidth="19mm"/>
<colspec colnum="5" colname="col5" colwidth="20mm"/>
<colspec colnum="6" colname="col6" colwidth="31mm"/>
<colspec colnum="7" colname="col7" colwidth="15mm"/>
<colspec colnum="8" colname="col8" colwidth="19mm"/>
<tbody>
<row>
<entry namest="col1" nameend="col8" align="justify">Start position indicates the number of amino acid from N-terminal of DEPDCI. Binding score is derived from "BIMAS" described in Materials and Methods.</entry></row></tbody></tgroup>
</table>
</tables></p>
<heading id="h0020"><u>Stimulation of the T cells using the predicted peptides from MPHOSPH 1 restricted with HLA-A*2402</u></heading>
<p id="p0091" num="0091">CTLs for those peptides derived from MPHOSHP1 (SEQ ID No: 2) were generated according to the protocols set forth in "Materials and Methods" section above. Resulting CTLs having detectable specific CTL activity, as assessed by IFN-gamma ELISPOT assay, are shown in <figref idref="f0001">Figure 1A</figref> and <figref idref="f0002">Figure 2A</figref>. In <figref idref="f0001">Figure 1A</figref>, the cells in the well number #4 stimulated with MPHOSPH 1-A24-9-278 (SEQ ID NO: 7) demonstrated potent IFN-gamma production as compared with the control. In <figref idref="f0002">Figure 2A</figref>, the cells in the well number #8 stimulated with MPHOSPH 1-A24-10-278 (SEQ ID NO: 8) demonstrated potent IFN-gamma production as compared with the control. Next, these cells in the positive well were expanded and limiting dilution was performed. As shown in <figref idref="f0001">Figure 1B</figref> (MPHOSPH1-A24-9-278 (SEQ ID NO: 7)) and <figref idref="f0002">Figure 2B</figref> (MPHOSPH1-A24-10-278 (SEQ ID NO: 8)), CTL clones having higher specific CTL activities against the peptide-pulsed target as compared to the activities against target without peptide pulse were established</p>
<p id="p0092" num="0092">The CTL clones stimulated by the MPHOSPH1-A24-9-278 (IYNEYIYDL (SEQ ID NO: 7)) (<figref idref="f0003">Figure 3A</figref>) and MPHOSPH1-A24-10-278 (IYNEYIYDLF (SEQ ID NO: 8)) (<figref idref="f0003">Figure 3B</figref>) demonstrated potent specific CTL activity against the peptide-pulsed target without showing any significant specific CTL activity against targets not pulsed with any peptide. This suggests that the CTL clone has the peptide-specific cytotoxicity.</p>
<heading id="h0021"><u>Specific CTL activity against the target cells expressing MPHOSPH1</u></heading><!-- EPO <DP n="39"> -->
<p id="p0093" num="0093">The established CTL clones raised against these peptides were examined for their ability to recognize the target cells endogenously expressing MPHOSPH1 and HLA-A*2402. Specific CTL activity against COS7 transfected with both the full length MPHOSPH1 gene and the HLA-A*2402 molecule, which is a specific model for the target cells endogenously express MPHOSPH1 and HLA-A*2402, was tested using as effector cells the CTL clone raised by MPHOSPH1-A24-9-278 (SEQ ID NO: 7). COS7 transfected with full length MPHOSPH1 but not HLA-A*2402 and COS7 transfected HLA-A*2402 but not full length MPHOSPH1 were prepared as controls. The CTL Clone having the highest specific CTL activity against COS7 was that transfected with both MPHOSPH1 and HLA-A24. However, it did not show significant specific CTL activity against COS7 transfected with neither MPHOSPH1 nor HLA-A24 (<figref idref="f0004">Figure 4</figref>).</p>
<p id="p0094" num="0094">These results clearly demonstrate that MPHOSPH1-A24-9-278 (SEQ ID NO: 7) was naturally expressed to the target cell surface with HLA-A24 molecule and recognized CTL.</p>
<heading id="h0022"><u>CTL activity against bladder cancer cell lines endogenously expressing MPHOSPH1</u></heading>
<p id="p0095" num="0095">The established CTL clone raised against MPHOSPH1-A24-9-278 (SEQ ID NO: 7) peptide was examined for their ability to recognize the tumor cells endogenously expressing MPHOSPH1. CTL activity against HT1376 cells, which endogenously express MPHOSPH1 and HLA-A24, was tested using the CTL clone raised by MPHOSPH1-A24-9-278 (SEQ ID NO: 7) as effector cells. J82 cells and RT-4 cells were used as the target cells which endogenously express MPHOSPH 1 but do not express HLA-A24. The established CTL clone showed high IFN-gamma production against HT1376 cells that express both MPHOSPH1 and HLA-A24. On the other hand, The CTL did not show significant CTL activity against J82 and RT-4 cells which express MPHOSPH1 but not HLA-A24 (<figref idref="f0005">Figure 5</figref>). It clearly demonstrated that MPHOSPH1-A24-9-278 (SEQ ID NO: 7) peptide was naturally processed to the tumor cell surface with HLA-A24 molecule and recognized by CTL.</p>
<heading id="h0023"><u>In vivo CTL induction with MPHOSPH1-A24-9-278 peptide in BALB/c mice</u></heading>
<p id="p0096" num="0096">It has been known that H-2Kd molecule, one of the mouse MHC class I, has resemble peptide anchor motif for HLA-A24 molecule and partially cross-react HLA-A24 restricted peptide. The present inventors then examined whether MPHOSPH1-A24-9-278 peptide induce the CTL in vivo by vaccination with this peptide using BALB/c mice (H-2Kd). IFA-conjugated peptide was subcutaneously injected into BALB/c mice on the day 0 and 7. On day 14, splenocytes were harvested and used as the responder cells for ELISPOT assay. Splenocytes of all mice injected peptide (Anil∼5) showed potent IFN-gamma production compared with control mice, which were injected IFA alone (negal∼3) (<figref idref="f0006">Figure 6</figref>). This data indicated that<!-- EPO <DP n="40"> --> MPHOSPH1-A24-9-278 peptide could elicit CTL response even in vivo.</p>
<heading id="h0024"><u>Stimulation of the T cells using the predicted peptides from MPHOSPH1 restricted with HLA-A*020</u>1</heading>
<p id="p0097" num="0097">Resulting CTLs having detectable specific CTL activity, as assessed by IFN-gamma ELISPOT assay, are shown in <figref idref="f0007">Figure 7</figref>. As shown in <figref idref="f0007">Figure 7A</figref>, the cells in the well number #1 and #5, stimulated with MPHOSPH1-A2-9-282 (YIYDLFVPV (SEQ ID NO: 9)) demonstrated potent IFN-gamma production as compared with the control. As shown in <figref idref="f0007">Figure 7B</figref>, the cells in the well number #8 stimulated with MPHOSPH1-A2-9-638 (RLAIFKDLV (SEQ ID NO: 10)) demonstrated potent IFN-gamma production as compared with the control. As shown in <figref idref="f0007">Figure 7C</figref>, the cells in the well number #4 stimulated with MPHOSPH1-A2-10-1714 (TMSSSKLSNV (SEQ ID NO: 11)) demonstrated potent IFN-gamma production as compared with the control.</p>
<p id="p0098" num="0098">As shown in <figref idref="f0008">figure 8A</figref> (MPHOSPH1-A2-9-282 (SEQ ID NO: 9)), <figref idref="f0008">figure 8B</figref> (MPHOSPH1-A2-9-638 (SEQ ID NO: 10)), and <figref idref="f0008">figure 8C</figref> (MPHOSPH1-A2-10-1714(SEQ ID NO: 9))., these cells in the positive well were expanded, and CTL lines having higher specific CTL activities against the peptide-pulsed target as compared to the activities against target without peptide pulse were established.</p>
<p id="p0099" num="0099">The CTL clones stimulated by the MPHOSPH1-A2-9-282 (YIYDLFVPV (SEQ ID NO: 9)) (<figref idref="f0009">Figure 9A, and 9B</figref>) demonstrated potent specific CTL activity against the peptide-pulsed target without any significant specific CTL activity against targets not pulsed with any peptide.</p>
<heading id="h0025"><u>Stimulation of the T cells using the predicted peptides from DEPDC1 restricted</u> <u>with HLA-A*2402</u></heading>
<p id="p0100" num="0100">CTLs for those peptides derived from DEPDC1 were generated according to the protocol described in "Materials and Methods" section above. Resulting CTLs having detectable specific CTL activity, as assessed by IFN-gamma ELISPOT assay, are shown in <figref idref="f0010">Figure 10</figref>. As shown in <figref idref="f0010">Figure 10A</figref>, the cells in the well number #10 stimulated with DEPDC1-A24-9-294 (EYYELFVNI (SEQ ID NO: 12)) demonstrated potent IFN-gamma production as compared with the control. Accordingly, these cells in the positive well were expanded and limiting dilution was performed. As shown in <figref idref="f0010">Figure 10B</figref> (DEPDC1-A24-9-294 (SEQ ID NO: 12)), CTL clones having higher specific CTL activities against the peptide-pulsed target compared to the activities against target without peptide pulse were establishedThe CTL clones stimulated by the DEPDC1-A24-9-294 (EYYELFVNI (SEQ ID NO: 12)) (<figref idref="f0011">Figure 11</figref>) demonstrated potent specific CTL activity against the peptide-pulsed target without showing any significant specific CTL activity against targets not pulsed with any peptide. The results<!-- EPO <DP n="41"> --> suggest that the CTL clone has the peptide-specific cytotoxicity.</p>
<heading id="h0026"><u>Specific CTL activity against the target cells expressing DEPDC 1 and HLA-A*2402</u></heading>
<p id="p0101" num="0101">The established CTL clones raised against these peptides were examined for their ability to recognize the target cells endogenously expressing DEPDC1 and HLA-A*2402. Specific CTL activity against COS7 transfected both with the full length DEPDC1 gene and the HLA-A*2402 molecule, which serves as a specific model for the target cells endogenously express DEPDC I and HLA-A*2402, was tested using as effector cells the CTL clone raised by DEPDC1-A24-9-294 (EYYELFVNI (SEQ ID NO: 12)). COS7 transfected with full length DEPDC1 but not HLA-A*2402 and COS7 transfected with HLA-A*2402 but not full length DEPDC1 were prepared as controls. The CTL Clone demonstrated high specific CTL activity against COS7 transfected both DEPDC 1 and HLA-A24. However, it did not demonstrate significant specific CTL activity against COS7 transfected neither DEPDC1 nor HLA-A24 (<figref idref="f0012">Figure 12</figref>).</p>
<p id="p0102" num="0102">These results clearly demonstrate that DEPDC1-A24-9-294 (EYYELFVNI (SEQ ID NO: 12)) is naturally expressed to the target cell surface with HLA-A24 molecule and recognized CTL.</p>
<heading id="h0027"><u>CTL activity against bladder cancer cell lines endogenously expressing DEPDC1</u></heading>
<p id="p0103" num="0103">The established CTL clone raised against DEPDC1-A24-9-294 peptide was examined for their ability to recognize the tumor cells endogenously expressing DEPDC1. CTL activity against HT1376 cells, which endogenously express DEPDC1 and HLA-A24, was tested using the CTL clone raised by DEPDC 1-A24-9-294 as effector cells. J82 cells and RT-4 cells were used as the target cells which endogenously express DEPDC1 but do not express HLA-A24. The established CTL clone showed high IFN-gamma production against HT1376 cells that express both DEPDC1 and HLA-A24. On the other hand, it did not show significant CTL activity against J82 and RT-4 cells which express DEPDC1 but not HLA-A24 (<figref idref="f0013">Figure 13</figref>). It clearly demonstrated that DEPDC1-A24-9-294 was naturally processed to the tumor cell surface with HLA-A24 molecule and recognized by CTL.</p>
<heading id="h0028"><u>In vivo CTL induction with DEPDC1-A24-9-294 peptide in BALB/c mice</u></heading>
<p id="p0104" num="0104">It has been known that H-2Kd molecule, one of the mouse MHC class I, has resemble peptide anchor motif for HLA-A24 molecule and partially cross-react HLA-A24 restricted peptide. The present inventors then examined whether DEPDC 1-A24-9-294 peptide induce the CTL in vivo by vaccination of this peptide using BALB/c mice (H-2Kd). IFA-conjugated peptide was subcutaneously injected into BALB/c mice on the day 0 and 7. On day 14, splenocytes were harvested and used as the responder cells for ELISPOT assay. Splenocytes of all mice injected peptide (Ani 1∼5) showed potent IFN-gamma production compared with control mice, which were injected IFA alone (negal, 2) (<figref idref="f0014">Figure 14</figref>). This data indicated that<!-- EPO <DP n="42"> --> DEPDC1-A24-9-294 peptide could elicit CTL response even in vivo.</p>
<heading id="h0029"><u>Stimulation of the T cells using the predicted peptides from DEPDC1 restricted</u> <u>with HLA-A*0201</u></heading>
<p id="p0105" num="0105">Resulting CTLs having detectable specific CTL activity when screened by IFN-gamma ELISPOT assay are shown in <figref idref="f0015">Figure 15</figref> and Table 6. The cells in the well number #4 and #7 stimulated with DEPDC1- A02-10-644 ((SLMIHTFSRC SEQ ID NO: 240)) showed potent IFN-gamma production compared with the control. The cells in the well number #2 stimulated with DEPDC1- A02-10-575 (SLLPASSMLT (SEQ ID NO: 241)) showed potent IFN-gamma production compared with the control. The cells in the well number #7 stimulated with DEPDC1- A02-10-506 (QLCRSQSLLL (SEQ ID NO: 243)) showed potent IFN-gamma production compared with the control. The cells in the well number #1 stimulated with DEPDC1- A02-10-765 (KQFQKEYPLI (SEQ ID NO: 244)) showed potent IFN-gamma production compared with the control. The cells in the well number #1 stimulated with DEPDC1-A02-10-395 (IMGGSCHNLI (SEQ ID NO: 249)) showed potent IFN-gamma production compared with the control. The cells in the well number #1 and #2 stimulated with DEPDC1- A02-10-224 (NMANTSKRGV (SEQ ID NO: 253)) showed potent IFN-gamma production compared with the control. The cells in the well number #4 stimulated with DEPDC1- A02-9-297 (ELFVNILGL (SEQ ID NO: 226)) showed potent IFN-gamma production compared with the control. The cells in the well number #3 and #4 stimulated with DEPDC1- A02-10-296 (YELFVNILGL (SEQ ID NO: 254)) showed potent IFN-gamma production compared with the control. The cells in the well number #2, #3, #5 and #7 stimulated with DEPDC1- A02-10-301 (NILGLLQPHL (SEQ ID NO: 255)) showed potent IFN-gamma production compared with the control. The cells in the well number #6 stimulated with DEPDC1-A02-9-598 (LLQPHLERV (SEQ ID NO: 192)) demonstrated potent IFN-gamma production as compared with the control. The cells in the well number #6 stimulated with DEPDC1-A02-9-619 (LLMRMISRM (SEQ ID NO: 195)) demonstrated potent IFN-gamma production as compared with the control. The cells in the well number #2 stimulated with DEPDC1-A02-9-290 (LLTFEYYEL (SEQ ID NO: 197)) demonstrated potent IFN gamma production as compared with the control. The cells in the well number #5 stimulated with DEPDC1-A02-9-563 (RLCKSTIEL (SEQ ID NO: 209)) demonstrated potent IFN-gamma production as compared with the control. The cells in the well number #1 and #3, stimulated with DEPDC1-A02-9-653 (CVLCCAEEV (SEQ ID NO: 225)), demonstrated potent IFN-gamma production as compared with the control. The cells in the well number #1 stimulated with DEPDC1-A02-10-674 (FLMDHHQEIL (SEQ ID NO: 228)) demonstrated potent IFN-gamma production as compared with the control. Finally, the cells in the well number #2 and #6, stimulated<!-- EPO <DP n="43"> --> with DEPDC1-A02-10-302 (ILVVCGYITV (SEQ ID NO: 230)), demonstrated potent IFN-gamma production as compared with the control.</p>
<p id="p0106" num="0106">The CTL lines stimulated by the DEPDC1-A02-10-296 (YELFVNILGL (SEQ ID NO: 254)) and DEPDC1-A02-9-653 (CVLCCAEEV (SEQ ID NO: 225)) (<figref idref="f0016">Figure 16</figref>) showed potent specific CTL activity against the peptide-pulsed target without showing any significant specific CTL activity against targets not pulsed with any peptide. It demonstrates that the CTL clone has the peptide-specific cytotoxicity.</p>
<p id="p0107" num="0107">
<tables id="tabl0010" num="0010">
<table frame="bottom">
<title>[Table 6]</title>
<tgroup cols="3" colsep="0">
<colspec colnum="1" colname="col1" colwidth="37mm"/>
<colspec colnum="2" colname="col2" colwidth="30mm"/>
<colspec colnum="3" colname="col3" colwidth="30mm"/>
<thead>
<row>
<entry namest="col1" nameend="col3" align="center" valign="middle">The candidate peptides from DEPDC1 restricted with HLA-A*0201</entry></row>
<row>
<entry align="center" valign="middle">peptide name</entry>
<entry align="center" valign="middle">SEQ ID No.</entry>
<entry align="center" valign="middle">Well No.</entry></row></thead>
<tbody>
<row rowsep="0">
<entry valign="middle">DEPDC1-A02-9-589</entry>
<entry align="center" valign="middle">192</entry>
<entry align="center" valign="middle">#6</entry></row>
<row rowsep="0">
<entry valign="middle">DEPDC1-A02-9-619</entry>
<entry align="center" valign="middle">195</entry>
<entry align="center" valign="middle">#6</entry></row>
<row rowsep="0">
<entry valign="middle">DEPDC1-A02-9-290</entry>
<entry align="center" valign="middle">197</entry>
<entry align="center" valign="middle">#2</entry></row>
<row rowsep="0">
<entry valign="middle">DEPDC1-A02-9-563</entry>
<entry align="center" valign="middle">209</entry>
<entry align="center" valign="middle">#5</entry></row>
<row rowsep="0">
<entry valign="middle">DEPDC1-A02-9-653</entry>
<entry align="center" valign="middle">225</entry>
<entry align="center" valign="middle">#1</entry></row>
<row rowsep="0">
<entry valign="middle">DEPDC1-A02-9-653</entry>
<entry align="center" valign="middle">225</entry>
<entry align="center" valign="middle">#3</entry></row>
<row rowsep="0">
<entry valign="middle">DEPDC1-A02-10-674</entry>
<entry align="center" valign="middle">228</entry>
<entry align="center" valign="middle">#1</entry></row>
<row rowsep="0">
<entry valign="middle">DEPDC1-A02-10-302</entry>
<entry align="center" valign="middle">230</entry>
<entry align="center" valign="middle">#2</entry></row>
<row>
<entry valign="middle">DEPDC1-A02-10-302</entry>
<entry align="center" valign="middle">230</entry>
<entry align="center" valign="middle">#6</entry></row></tbody></tgroup>
</table>
</tables></p>
<heading id="h0030"><u>Specific CTL activity against the target cells expressing DEPDC1 and HLA-A</u><sup><u>*</u></sup><u>0201</u></heading>
<p id="p0108" num="0108">The established CTL lines raised against DEPDC1-A02-10-296 peptide (YELFVNILGL (SEQ ID NO: 254)) and DEPDC1-A02-9-653 (CVLCCAEEV (SEQ ID NO: 225)) were examined for their ability to recognize the target cells endogenously expressing DEPDC1 and HLA-A2. At first, we established HEK293 cell line constitutively expressed HLA-A<sup>*</sup>0201 (HEK-A2) to efficiently determine specific CTL response. Specific CTL activity against HEK-A2 cells transfected full length of DEPDC1 gene, which is specific model for the target cells expressed DEPDC1 and HLA-A2, was tested using the established CTL lines raised by DEPDC1-A02-10-296 (YELFVNILGL (SEQ ID NO: 254)) or DEPDC1-A02-9-653 (CVLCCAEEV (SEQ ID NO: 225)) as effector cells. HEK-A2 transfected Mock expressed vector and HEK-A2 pulsed with no corresponding peptide derived from DEPDC1 were prepared for the negative control. The established CTL lines showed specific CTL activity against HEK-A2 transfected DEPDC1. On the other hand, the CTL lines did not show significant specific CTL activity against HEK-A2 transfected Mock expressed vector and which pulsed DEPDC1-A02-9-674 peptide or DEPDC 1-A02-9-462 peptide (<figref idref="f0017">Figure 17</figref>). It clearly demonstrated that DEPDC1-A02-10-296 and DEPDC1-A02-9-653<!-- EPO <DP n="44"> --> peptide was naturally processed to the target cell surface with HLA-A2 molecule and recognized by CTL.</p>
<heading id="h0031"><u>Homology analysis of the antigen peptides</u></heading>
<p id="p0109" num="0109">The CTLs established against peptides of this disclosure demonstrated potent specific CTL activity. This suggests that the sequences of MPHOSPH1-A24-9-278 (SEQ ID NO: 7), MPHOSPH1-A24-10-278 (SEQ ID NO: 8), MPHOSPH1-A2-9-282 (SEQ ID NO: 9), MPHOSPH1-A2-9-638 (SEQ ID NO: 10), MPHOSPH1-A2-10-1714 (SEQ ID NO: 11), DEPDC1-A24-9-294 (SEQ ID NO: 12), DEPDC1-A2-9-589 (SEQ ID NO: 192), DEPDC1-A2-9-619 (SEQ ID NO: 195), DEPDC1-A2-9-290 (SEQ ID NO: 197), DEPDC1-A2-9-563 (SEQ ID NO: 209), DEPDC1-A2-9-653 (SEQ ID NO: 225), DEPDC1-A2-10-674 (SEQ ID NO: 228), DEPDC1-A2-10-302 (SEQ ID NO: 230) DEPDC1-A02-10-644 (SEQ ID NO: 240), DEPDC1-A02-10-575 (SEQ ID NO: 241), DEPDC1-A02-10-506 (SEQ ID NO: 243), DEPDC1-A02-10-765 (SEQ ID NO: 244), DEPDC1- A02-10-395 (SEQ ID NO: 249), DEPDC1-A02-10-224 (SEQ ID NO: 253), DEPDC1- A02-9-297 (SEQ ID NO: 226), DEPDC1-A02-10-296 (SEQ ID NO: 254) and DEPDC1-A02-10-301 (SEQ ID NO: 255) are homologous to the peptides derived from other molecules, which are known to sensitize human immune system. To exclude this possibility, homology analysis was performed with the peptide sequences as queries using BLAST algorithm (http://www.ncbi.nlm.nih.gov/blast/blast.cgi) No significant sequence homology was revealed.</p>
<p id="p0110" num="0110">These results suggest that the sequences of MPHOSPH1-A24-9-278 (SEQ ID NO: 7), MPHOSPH1-A24-10-278 (SEQ ID NO: 8), MPHOSPH1-A2-9-282 (SEQ ID NO: 9), MPHOSPH1-A2-9-638 (SEQ ID NO: 10), MPHOSPH1-A2-10-1714 (SEQ ID NO: 11), DEPDC1-A24-9-294 (SEQ ID NO: 12), DEPDC1-A2-9-598 (SEQ ID NO: 192), DEPDC1-A2-9-619 (SEQ ID NO: 195), DEPDC1-A2-9-290 (SEQ ID NO: 197), DEPDC1-A2-9-563 (SEQ ID NO: 209), DEPDC1-A2-9-653 (SEQ ID NO: 225), DEPDC1-A2-10-674 (SEQ ID NO: 228), DEPDC1-A2-10-302 (SEQ ID NO: 230) DEPDC1-A02-10-644 (SEQ ID NO: 240), DEPDC1-A02-10-575 (SEQ ID NO: 241), DEPDC1-A02-10-506 (SEQ ID NO: 243), DEPDC1-A02-10-765 (SEQ ID NO: 244), DEPDC1- A02-10-395 (SEQ ID NO: 249), DEPDC1-A02-10-224 (SEQ ID NO: 253), DEPDC1-A02-9-297 (SEQ ID NO: 226), DEPDC1-A02-10-296 (SEQ ID NO: 254) and DEPDC1-A02-10-301 (SEQ ID NO: 255) are unique and thus possess a low risk of raising unintended immunologic response to any unrelated molecule.</p>
<heading id="h0032"><u>DISCUSSION</u></heading>
<p id="p0111" num="0111">Identification of new TAAs, particularly those that induce potent and specific anti-tumor immune responses, warrants further development of the clinical application of peptide vaccination strategies in various types of cancer (<nplcit id="ncit0081" npl-type="s"><text>Boon T. et al., (1996) J Exp Med 183: 725-9</text></nplcit>.; <nplcit id="ncit0082" npl-type="s"><text>van der Bruggen P et al., (1991) Science 254: 1643-7</text></nplcit>.; <nplcit id="ncit0083" npl-type="s"><text>Brichard V et<!-- EPO <DP n="45"> --> al., (1993) J Exp Med 178: 489-95</text></nplcit>.; <nplcit id="ncit0084" npl-type="s"><text>Kawakami Y et al., (1994) J Exp Med 180: 347-52</text></nplcit>.; <nplcit id="ncit0085" npl-type="s"><text>Shichijo S et al., (1998) J Exp Med 187:277-88</text></nplcit>.; <nplcit id="ncit0086" npl-type="s"><text>Chen YT et al., (1997) Proc.Natl.Acd. Sci. USA, 94: 1914-8</text></nplcit>.; <nplcit id="ncit0087" npl-type="s"><text>Harris CC., (1996) J Natl Cancer Inst 88:1442-5</text></nplcit>.; <nplcit id="ncit0088" npl-type="s"><text>Butterfield LH et al., (1999) Cancer Res 59:3134-42</text></nplcit>.; <nplcit id="ncit0089" npl-type="s"><text>Vissers JL et al., (1999) Cancer Res 59: 5554-9</text></nplcit>.; <nplcit id="ncit0090" npl-type="s"><text>van der Burg SH et al., (1996) J. Immunol 156:3308-14</text></nplcit>.; <nplcit id="ncit0091" npl-type="s"><text>Tanaka F et al., (1997) Cancer Res 57:4465-8</text></nplcit>.; <nplcit id="ncit0092" npl-type="s"><text>Fujie T et al., (1999) Int J Cancer 80:169-72</text></nplcit>.; <nplcit id="ncit0093" npl-type="s"><text>Kikuchi M et al., (1999) Int J Cancer 81 : 459-66</text></nplcit>.; <nplcit id="ncit0094" npl-type="s"><text>Oiso M et al., (1999) Int J Cancer 81:387-94</text></nplcit>.).</p>
<p id="p0112" num="0112">cDNA microarray technologies can disclose comprehensive profiles of gene expression of malignant cells (<nplcit id="ncit0095" npl-type="s"><text>Lin YM, et al., Oncogene. 2002 Jun 13;21:4120-8</text></nplcit>.; <nplcit id="ncit0096" npl-type="s"><text>Kitahara O, et al., Cancer Res. 2001 May 1;61:3544-9</text></nplcit>.; <nplcit id="ncit0097" npl-type="s"><text>Suzuki C, et al., Cancer Res. 2003 Nov 1;63:7038-41</text></nplcit>.; <nplcit id="ncit0098" npl-type="s"><text>Ashida S, Cancer Res. 2004 Sep 1;64:5963-72</text></nplcit>.; <nplcit id="ncit0099" npl-type="s"><text>Ochi K, et al., Int J Oncol. 2004 Mar;24(3):647-55</text></nplcit>.; <nplcit id="ncit0100" npl-type="s"><text>Kaneta Y, et al., Int J Oncol. 2003 Sep;23:681-91</text></nplcit>.; <nplcit id="ncit0101" npl-type="s"><text>Obama K, Hepatology. 2005 Jun;41:1339-48</text></nplcit>.; <nplcit id="ncit0102" npl-type="s"><text>Kato T, et al., Cancer Res. 2005 Jul 1;65:5638-46</text></nplcit>.; <nplcit id="ncit0103" npl-type="s"><text>Kitahara O, et al., Neoplasia. 2002 Jul-Aug;4:295-303</text></nplcit>.; <nplcit id="ncit0104" npl-type="s"><text>Saito-Hisaminato A et al., DNA Res 2002, 9: 35-45</text></nplcit>.) and, find utility in the identification of potential TAAs. Among the transcripts that are up-regulated in various cancers, two novel human genes, termed MPHOSPH1 and DEPDC1, respectively, were identified using these technologies.</p>
<p id="p0113" num="0113">As demonstrated above, MPHOSPH1 and DEPDC1, are over-expressed in various cancers but show minimal expression in normal tissues. In addition, these genes have been shown to have a significant function related to cell proliferation (See <patcit id="pcit0022" dnum="JP2006302684W"><text>PCT/JP2006/302684</text></patcit>). Thus, peptides derived from MPHOSPH1 and DEPDC1 can serve as TAA epitopes, which, in turn, can be used to induce significant and specific immune responses against cancer cells.</p>
<p id="p0114" num="0114">Thus, as MPHOSPH1 and DEPDC1 are novel TAAs, vaccines using these epitope peptides find utility as immunotherapeutics against various carcinomas or other disease expressing these molecules.</p>
<heading id="h0033"><u>EXAMPLE 2</u></heading>
<heading id="h0034"><u>MATERIALS AND METHODS</u></heading>
<heading id="h0035"><u>Peptides and adjuvant</u></heading>
<p id="p0115" num="0115">The synthesized GMP grade peptides were purchased from Neo Multi Peptide System (MPS) (San Diego, CA). As an adjuvant, incomplete Freund's adjuvant (IFA) (MONTANIDE *ISA51) were used. 1mg of the appropriate peptide was emulsioned with 1mg of IFA.</p>
<heading id="h0036"><u>Antigen Expression</u></heading>
<p id="p0116" num="0116">The present inventors performed immunohistochemical analysis. Tumor cells or tumor tissues from bladder cancers which was obtained from surgery or biopsy was<!-- EPO <DP n="46"> --> stained by each MPHOSPH1 and DEPDC1-specitic polyclonal antibody. Protocol of staining was established in Human Genome Center, Institute for Medical Science, the University of Tokyo as described previously (<nplcit id="ncit0105" npl-type="s"><text>Kanehira M et al. Cancer Res.;67(7):3276-3285, 2007</text></nplcit>., <nplcit id="ncit0106" npl-type="s"><text>Kanehira M et al. Oncogene. 2007 Apr 23</text></nplcit>; [Epub ahead of print]). HLA-A*2402 expression was tested to performed at SRL (Tachikawa, Japan)</p>
<heading id="h0037"><u>Enrolled patients</u></heading>
<p id="p0117" num="0117">Enrolled criteria were as follows;
<ol id="ol0005" compact="compact" ol-style="">
<li>1. Patients with inoperable recurrent bladder cancer with previously treated with standard chemotherapy and turned to be failure.</li>
<li>2. Patients with performance status 0 or 1 in Japanese Criteria.</li>
<li>3. Patients from 20 years old to 80 years old</li>
<li>4. Patients with primary tumor or metastasis which can be recognized by image inspection (CT/MRI) before treatment, regardless of RECIST guideline</li>
<li>5. Patients with more than 4 weeks after prior treatment (surgery, chemotherapy, radiotherapy, thermotherapy, other immunotherapy etc.)</li>
<li>6. Patients expected more than 3 months prognosis</li>
<li>7. Patients with bone marrow function (WBC more than 2000, 15000 less than, plate more than 50000), liver function (GOT less than 150, GPT less than150, T-bil less than 3.0), renal function (Cr less than3.0)</li>
<li>8. Patients with HLA-A*2402</li>
<li>9. Tumor of the patients with expression of MPHOSPH I and/or DEPDC 1</li>
</ol></p>
<p id="p0118" num="0118">Exclusion criteria were as follows;
<ol id="ol0006" compact="compact" ol-style="">
<li>1. Patients with pregnant</li>
<li>2. Patients with breast-feeding</li>
<li>3. Patients willing to be made pregnant</li>
<li>4. Patients with uncontrollable infection</li>
<li>5. Patients with necessity of following medicine in the period of clinical trial systemic administration of steroid<br/>
systemic administration of immunosuppressant</li>
<li>6. Patients who are not thought to be enrolled this trial by doctor or principal investigator</li>
</ol></p>
<heading id="h0038"><u>Protocol</u></heading>
<p id="p0119" num="0119">Enrolled bladder cancer patients with HLA-A*2402, whose tumors express M phase phosphoprotein 1 (MPHOSPH1) and/or DEP domain containing 1 (DEPDC1) were immunized with HLA-A*2402-restricted epitope peptides, MPHOSPH1-9-278 (IYNEYIYDL (SEQ ID NO: 7)) and/or DEPDC1-9-294 (EYYELFVNI (SEQ ID NO: 12)). Each peptide was combined with 1mL of incomplete Freund's adjuvant (IFA,<!-- EPO <DP n="47"> --> MONTANIDE *ISA51) and was subcutaneously injected into axillary or inguinal lesion once a week. Four times injection is defined as one course, then after 1 course for immunological and clinical evaluation, blood was drawn and CT/MRI was performed.</p>
<heading id="h0039"><u>Evaluation of Safety</u></heading>
<p id="p0120" num="0120">Evaluation of adverse effect was performed along with National Cancer Institute-Common Toxicity Criteria version 3, (NCI-CTC ver.3).</p>
<heading id="h0040"><u>Immunological evaluation</u></heading>
<p id="p0121" num="0121">This is one of secondary endpoint in this study and we confirm whether peptide-specific CTL response occurred or not. Specific CTL response was measure as follows; Peripheral blood mononuclear cells were collected, and re-stimulated by the appropriate peptides. CTL response was tested on the 14th day by IFN-g ELISPOT assay.</p>
<heading id="h0041"><u>Evaluation of anti-tumor effects</u></heading>
<p id="p0122" num="0122">Evaluation of clinical response was performed in accordance with RECIST criteria.</p>
<heading id="h0042"><u>RESULTS</u></heading>
<p id="p0123" num="0123">Table 7 showed the summary of this clinical trial. There were no severe adverse effects, except Grade 2 of exanthema of Case 3. One minor response (Case 3) and one mixed response (Case 4) were obtained. The expression of MPHOSPH1 was 4 of 5 cases, whereas that of DEPDC1 was 5 of 5 cases, respectively.</p>
<p id="p0124" num="0124">
<tables id="tabl0011" num="0011">
<table frame="bottom">
<title>[Table 7]</title>
<tgroup cols="11" colsep="0">
<colspec colnum="1" colname="col1" colwidth="14mm"/>
<colspec colnum="2" colname="col2" colwidth="22mm"/>
<colspec colnum="3" colname="col3" colwidth="21mm"/>
<colspec colnum="4" colname="col4" colwidth="20mm"/>
<colspec colnum="5" colname="col5" colwidth="14mm"/>
<colspec colnum="6" colname="col6" colwidth="22mm"/>
<colspec colnum="7" colname="col7" colwidth="28mm"/>
<colspec colnum="8" colname="col8" colwidth="26mm"/>
<colspec colnum="9" colname="col9" colwidth="23mm"/>
<colspec colnum="10" colname="col10" colwidth="18mm"/>
<colspec colnum="11" colname="col11" colwidth="14mm"/>
<thead>
<row>
<entry namest="col1" nameend="col11" align="left" valign="middle">The summary of this clinical trial</entry></row>
<row rowsep="0">
<entry morerows="1" rowsep="1" align="center" valign="middle">Case</entry>
<entry morerows="1" rowsep="1" align="center" valign="middle">Age/ Gender</entry>
<entry morerows="1" rowsep="1" align="center" valign="middle">Vaccination</entry>
<entry morerows="1" rowsep="1" align="center" valign="middle">Adv. Effect</entry>
<entry morerows="1" rowsep="1" align="center" valign="middle">DTH</entry>
<entry morerows="1" rowsep="1" align="center" valign="middle">Eva Lesion</entry>
<entry morerows="1" rowsep="1" valign="middle">Eva.</entry>
<entry morerows="1" rowsep="1" align="center" valign="middle">Present Status</entry>
<entry namest="col9" nameend="col10" align="center" valign="middle">Ag expression</entry>
<entry morerows="1" rowsep="1" align="center" valign="middle">CTL</entry></row>
<row>
<entry align="center" valign="middle">MPHOSPH1</entry>
<entry valign="middle">DEPDC1</entry></row></thead>
<tbody>
<row rowsep="0">
<entry align="center" valign="middle">1</entry>
<entry valign="middle">79/M</entry>
<entry valign="middle">1 course</entry>
<entry valign="middle">No</entry>
<entry align="center" valign="middle">No</entry>
<entry valign="middle">LNs, Brain</entry>
<entry valign="middle">PD</entry>
<entry valign="middle">1.8mo, dead</entry>
<entry valign="middle">○</entry>
<entry valign="middle">○</entry>
<entry align="center" valign="middle">No</entry></row>
<row rowsep="0">
<entry align="center" valign="middle">2</entry>
<entry valign="middle">72/F</entry>
<entry valign="middle">in 3 course</entry>
<entry valign="middle">No</entry>
<entry align="center" valign="middle">No</entry>
<entry valign="middle">Local Rec</entry>
<entry valign="middle">SD (4.5mo)</entry>
<entry valign="middle">5.0mo, alive</entry>
<entry valign="middle">○</entry>
<entry valign="middle">○</entry>
<entry align="center" valign="middle">NT</entry></row>
<row rowsep="0">
<entry align="center" valign="middle">3</entry>
<entry valign="middle">49/M</entry>
<entry valign="middle">in 4 course</entry>
<entry valign="middle">exanthema</entry>
<entry align="center" valign="middle">No</entry>
<entry valign="middle">Lung Mets</entry>
<entry valign="middle">Minor Response</entry>
<entry valign="middle">3.7mo, alive</entry>
<entry valign="middle">x</entry>
<entry valign="middle">○</entry>
<entry align="center" valign="middle">Yes</entry></row>
<row rowsep="0">
<entry align="center" valign="middle">4</entry>
<entry valign="middle">74/M</entry>
<entry valign="middle">in 2 course</entry>
<entry valign="middle">No</entry>
<entry align="center" valign="middle">No</entry>
<entry valign="middle">Local Rec</entry>
<entry valign="middle">Minor Response</entry>
<entry valign="middle">1.4mo, alive</entry>
<entry valign="middle">○</entry>
<entry valign="middle">○</entry>
<entry align="center" valign="middle">NT</entry></row>
<row>
<entry align="center" valign="middle">5</entry>
<entry valign="middle">78/M</entry>
<entry valign="middle">in 2 course</entry>
<entry valign="middle">No</entry>
<entry align="center" valign="middle">No</entry>
<entry valign="middle">Local Rec</entry>
<entry valign="middle">SD</entry>
<entry valign="middle">1.4mo, alive</entry>
<entry valign="middle">○</entry>
<entry valign="middle">○</entry>
<entry align="center" valign="middle">NT</entry></row></tbody></tgroup>
<tgroup cols="11" rowsep="0">
<colspec colnum="1" colname="col1" colwidth="14mm"/>
<colspec colnum="2" colname="col2" colwidth="22mm"/>
<colspec colnum="3" colname="col3" colwidth="21mm"/>
<colspec colnum="4" colname="col4" colwidth="20mm"/>
<colspec colnum="5" colname="col5" colwidth="14mm"/>
<colspec colnum="6" colname="col6" colwidth="22mm"/>
<colspec colnum="7" colname="col7" colwidth="28mm"/>
<colspec colnum="8" colname="col8" colwidth="26mm"/>
<colspec colnum="9" colname="col9" colwidth="23mm"/>
<colspec colnum="10" colname="col10" colwidth="18mm"/>
<colspec colnum="11" colname="col11" colwidth="14mm"/>
<tbody>
<row>
<entry namest="col1" nameend="col11" align="justify">NT: not tested</entry></row></tbody></tgroup>
</table>
</tables></p>
<heading id="h0043"><u>Case 2</u></heading>
<p id="p0125" num="0125">In case 2, 72 years old female with far advanced bladder cancer in standard chemotherapy failure was enrolled this clinical trial. In <figref idref="f0018">figure 18</figref>, the antigen expression of her tumor revealed both MPHOSPH1 and DEPDC1 were expressed strongly. Therefore, we have vaccinated two kinds of epitope peptides derived from MPHOSPH1 and DEPDC1. Case 2 had local recurrence of the bladder cancer. It was evaluated stable disease (SD) in accordance with RECIST criteria (<figref idref="f0019">Figure 19</figref>).</p>
<heading id="h0044"><u>Cace 3</u></heading>
<p id="p0126" num="0126">In case 3, 49 years old male with far advanced bladder cancer in standard<!-- EPO <DP n="48"> --> chemotherapy failure was enrolled this clinical trial. Only DEPDC1 was expressed strongly (<figref idref="f0020">Figure 20</figref>). Therefore, we have vaccinated the epitope peptide derived from DEPDC1 alone. Case 3 had multiple lung metastases of the bladder cancer. In right (<figref idref="f0021">Figure 21</figref>) and left (<figref idref="f0022">Figure 22</figref>) lobes of lung metastases, the progression rate was decreased after vaccination. Especially, the size of the tumor was decreased after 3rd courses. <figref idref="f0023">Figure 23</figref> showed theanti-tumor effect in accordance with RECIST criteria. It was clarified that the progression rate of metastatic tumor was decreased after vaccination. It indicated that minor response was obtained by vaccination using epitope peptide derived from DEPDC 1. In terms of immunological evaluation in case 3, specific CTL response was measured before and after vaccination. Specific CTL response was strongly shown after vaccination (<figref idref="f0024">Figure 24</figref>). It clearly indicated that CTL induced by epitope peptide derived from DEPDC1 may show the anti-tumor effect.</p>
<heading id="h0045"><u>Cace 4</u></heading>
<p id="p0127" num="0127">In case 4, 74 years old male with far advanced bladder cancer in standard chemotherapy failure was enrolled this clinical trial. MPHOSPH1 and DEPDC1 were expressed from his tumor (<figref idref="f0025">Figure 25</figref>). Therefore, we have vaccinated two kinds of epitope peptides derived from MPHOSPH1 and DEPDC1. Case 4 had local recurrence of the bladder cancer. After 1 course vaccination, the size of the tumor was reduced 20% in accordance with RECIST criteria (<figref idref="f0026">Figure 26</figref>). However, new metastatic lesions in the lung were appeared. It indicated that mixed response was obtained by vaccination using two kinds of epitope peptides derived from MPHOSPH1 and DEPDC1.</p>
<heading id="h0046"><u>DISCUSSION</u></heading>
<p id="p0128" num="0128">Rationale of this clinical trial is described blow;
<ol id="ol0007" compact="compact" ol-style="">
<li>1. Since MPHOSPH1 and DEPDC1 are not expressed in normal tissues except testis, both antigens are highly tumor-specific.</li>
<li>2. These peptides are considered to have strong immunogenicity, since potent and specific CTLs were established by these epitope peptides.</li>
<li>3. There is 60% of Japanese population with HLA-A*2402.</li>
<li>4. These peptides are chemically stable enough to apply to the clinical trial.</li>
</ol>
The purpose of this study is to obtain clinical information of its toxicity, immunological response and anti-tumor activity.</p>
<p id="p0129" num="0129">Previously reported adverse effects of vaccine clinical trial using peptides are fur-like symptom, such as fever, headache and discomfort. In rare cases, radical skin reaction with blisters, considered as transient cross reactivity at injected site, was reported. In this study, there were no severe adverse effects, except Grade 2 of exanthema of Case 3. This patient had clinical history to show exanthema during chemotherapy. It indicated that this adverse effect did not come from this vaccination, and therefore this<!-- EPO <DP n="49"> --> protocol may be safe.</p>
<p id="p0130" num="0130">Immunological analysis was performed by specific CTL induction after vaccination. In case 1, specific CTL response was not obtained after vaccination (data not shown). In case 3, specific CTL response against DEPDC1 derived peptide was clearly shown after 1<sup>st</sup> and 2<sup>nd</sup> course of vaccination. In case 3, anti-tumor effect was obtained by vaccination. It clearly demonstrated that this DEPDC1 derived peptide showed anti-tumor effect against bladder cancer by induction of the specific CTL.</p>
<p id="p0131" num="0131">In case 4, after only 1<sup>st</sup> course of vaccination, anti-tumor effect was clearly obtained against the local recurrence of the bladder cancer. This evidence strongly supports that these epitope peptides show anti-tumor effect against bladder cancer.</p>
<p id="p0132" num="0132">In conclusion, it was clarified that this epitope therapy was safe, and furthermore showed strong anti-tumor effect without severe adverse effects.</p>
<heading id="h0047"><b>Industrial Applicability</b></heading>
<p id="p0133" num="0133">The present disclosure identifies new TAAs, particularly those which induce potent and specific anti-tumor immune responses. Such TAAs warrant further development aspeptide vaccines against diseases associated with MPHOSPH1 and/or DEPDC1, e.g. cancers.<!-- EPO <DP n="50"> --></p>
<heading id="h0048">SEQUENCE LISTING</heading>
<p id="p0134" num="0134">
<ul id="ul0004" list-style="none">
<li>&lt;110&gt; CNOOTHERAPY SCIENCE, INC. THE UNIVERSITY OF TOKYO FUJICKA, Tomoaki</li>
<li>&lt;120&gt; PEPTIDE VACCINES FOR CANCERS EXPRESSING MPHOSPH1 OR DEPDC1 POLYPEPTIDES</li>
<li>&lt;130&gt; ONC-A0618P</li>
<li>&lt;150&gt; <patcit id="pcit0023" dnum="US60852575A"><text>US 60/852, 575
&lt;151&gt; 2006-10-17</text></patcit></li>
<li>&lt;160&gt; 255</li>
<li>&lt;170&gt; Patent In ver si on 3.1</li>
<li>&lt;210&gt; 1<br/>
&lt;211&gt; 6319<br/>
&lt;212&gt; DNA<br/>
&lt;213&gt; Homo sapi ens</li>
<li>&lt;220&gt;<br/>
&lt;221&gt; CDS<br/>
&lt;222&gt; (73)..(5415)</li>
<li>&lt;400&gt; 1
<img id="ib0001" file="imgb0001.tif" wi="147" he="136" img-content="dna" img-format="tif"/><!-- EPO <DP n="51"> -->
<img id="ib0002" file="imgb0002.tif" wi="147" he="222" img-content="dna" img-format="tif"/><!-- EPO <DP n="52"> -->
<img id="ib0003" file="imgb0003.tif" wi="147" he="230" img-content="dna" img-format="tif"/><!-- EPO <DP n="53"> -->
<img id="ib0004" file="imgb0004.tif" wi="147" he="230" img-content="dna" img-format="tif"/><!-- EPO <DP n="54"> -->
<img id="ib0005" file="imgb0005.tif" wi="147" he="230" img-content="dna" img-format="tif"/><!-- EPO <DP n="55"> -->
<img id="ib0006" file="imgb0006.tif" wi="147" he="224" img-content="dna" img-format="tif"/><!-- EPO <DP n="56"> -->
<img id="ib0007" file="imgb0007.tif" wi="147" he="230" img-content="dna" img-format="tif"/><!-- EPO <DP n="57"> -->
<img id="ib0008" file="imgb0008.tif" wi="147" he="120" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 2<br/>
&lt;211&gt; 1780<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Homo sapi ens</li>
<li>&lt;400&gt; 2
<img id="ib0009" file="imgb0009.tif" wi="129" he="73" img-content="dna" img-format="tif"/><!-- EPO <DP n="58"> -->
<img id="ib0010" file="imgb0010.tif" wi="130" he="230" img-content="dna" img-format="tif"/><!-- EPO <DP n="59"> -->
<img id="ib0011" file="imgb0011.tif" wi="130" he="229" img-content="dna" img-format="tif"/><!-- EPO <DP n="60"> -->
<img id="ib0012" file="imgb0012.tif" wi="130" he="220" img-content="dna" img-format="tif"/><!-- EPO <DP n="61"> -->
<img id="ib0013" file="imgb0013.tif" wi="134" he="220" img-content="dna" img-format="tif"/><!-- EPO <DP n="62"> -->
<img id="ib0014" file="imgb0014.tif" wi="126" he="230" img-content="dna" img-format="tif"/><!-- EPO <DP n="63"> -->
<img id="ib0015" file="imgb0015.tif" wi="126" he="229" img-content="dna" img-format="tif"/><!-- EPO <DP n="64"> -->
<img id="ib0016" file="imgb0016.tif" wi="128" he="61" img-content="dna" img-format="tif"/></li>
</ul>
<ul id="ul0005" list-style="none">
<li>&lt;210&gt; 3<br/>
&lt;211&gt; 5318<br/>
&lt;212&gt; DNA<br/>
&lt;213&gt; Homo sapi ens</li>
<li>&lt;220&gt;<br/>
&lt;221&gt; CDS<br/>
&lt;222&gt; (79)..(2511)</li>
<li>&lt;400&gt; 3
<img id="ib0017" file="imgb0017.tif" wi="147" he="124" img-content="dna" img-format="tif"/><!-- EPO <DP n="65"> -->
<img id="ib0018" file="imgb0018.tif" wi="147" he="222" img-content="dna" img-format="tif"/><!-- EPO <DP n="66"> -->
<img id="ib0019" file="imgb0019.tif" wi="147" he="230" img-content="dna" img-format="tif"/><!-- EPO <DP n="67"> -->
<img id="ib0020" file="imgb0020.tif" wi="147" he="226" img-content="dna" img-format="tif"/><!-- EPO <DP n="68"> -->
<img id="ib0021" file="imgb0021.tif" wi="147" he="183" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 4<br/>
&lt;211&gt; 811<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Homo sapiens</li>
<li>&lt;400&gt; 4
<img id="ib0022" file="imgb0022.tif" wi="129" he="19" img-content="dna" img-format="tif"/><!-- EPO <DP n="69"> -->
<img id="ib0023" file="imgb0023.tif" wi="130" he="229" img-content="dna" img-format="tif"/><!-- EPO <DP n="70"> -->
<img id="ib0024" file="imgb0024.tif" wi="130" he="220" img-content="dna" img-format="tif"/><!-- EPO <DP n="71"> -->
<img id="ib0025" file="imgb0025.tif" wi="130" he="193" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 5<br/>
&lt;211&gt; 8666<br/>
&lt;212&gt; DNA<br/>
&lt;213&gt; Homo sapi ens</li>
<li>&lt;220&gt;<br/>
&lt;221&gt; CDS<br/>
&lt;222&gt; (79)..(1659)<!-- EPO <DP n="72"> --></li>
<li>&lt;400&gt; 5
<img id="ib0026" file="imgb0026.tif" wi="147" he="224" img-content="dna" img-format="tif"/><!-- EPO <DP n="73"> -->
<img id="ib0027" file="imgb0027.tif" wi="147" he="230" img-content="dna" img-format="tif"/><!-- EPO <DP n="74"> -->
<img id="ib0028" file="imgb0028.tif" wi="147" he="229" img-content="dna" img-format="tif"/><!-- EPO <DP n="75"> -->
<img id="ib0029" file="imgb0029.tif" wi="147" he="224" img-content="dna" img-format="tif"/><!-- EPO <DP n="76"> -->
<img id="ib0030" file="imgb0030.tif" wi="151" he="230" img-content="dna" img-format="tif"/><!-- EPO <DP n="77"> -->
<img id="ib0031" file="imgb0031.tif" wi="147" he="91" img-content="dna" img-format="tif"/></li>
</ul>
<ul id="ul0006" list-style="none">
<li>&lt;210&gt; 6<br/>
&lt;211&gt; 527<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Homo sapi ens</li>
<li>&lt;400&gt; 6
<img id="ib0032" file="imgb0032.tif" wi="129" he="100" img-content="dna" img-format="tif"/><!-- EPO <DP n="78"> -->
<img id="ib0033" file="imgb0033.tif" wi="130" he="230" img-content="dna" img-format="tif"/><!-- EPO <DP n="79"> -->
<img id="ib0034" file="imgb0034.tif" wi="130" he="98" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 7<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 7
<img id="ib0035" file="imgb0035.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 8<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized pept i de sequence</li>
<li>&lt;400&gt; 8
<img id="ib0036" file="imgb0036.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 9<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized pept i de sequence</li>
<li>&lt;400&gt; 9<!-- EPO <DP n="80"> -->
<img id="ib0037" file="imgb0037.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 10<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 10
<img id="ib0038" file="imgb0038.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 11<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed peptide sequence</li>
<li>&lt;400&gt; 11
<img id="ib0039" file="imgb0039.tif" wi="79" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 12<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 12
<img id="ib0040" file="imgb0040.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 13<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized pept i de sequence</li>
<li>&lt;400&gt; 13
<img id="ib0041" file="imgb0041.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 14<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 14<!-- EPO <DP n="81"> -->
<img id="ib0042" file="imgb0042.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 15<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed peptide sequence</li>
<li>&lt;400&gt; 15
<img id="ib0043" file="imgb0043.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 16<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed peptide sequence</li>
<li>&lt;400&gt; 16
<img id="ib0044" file="imgb0044.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 17<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed peptide sequence</li>
<li>&lt;400&gt; 17
<img id="ib0045" file="imgb0045.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 18<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 18
<img id="ib0046" file="imgb0046.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 19<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence<!-- EPO <DP n="82"> --></li>
<li>&lt;400&gt; 19
<img id="ib0047" file="imgb0047.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 20<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 20
<img id="ib0048" file="imgb0048.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 21<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 21
<img id="ib0049" file="imgb0049.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 22<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 22
<img id="ib0050" file="imgb0050.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 23<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 23
<img id="ib0051" file="imgb0051.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 24<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence<!-- EPO <DP n="83"> --></li>
<li>&lt;400&gt; 24
<img id="ib0052" file="imgb0052.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 25<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed peptide sequence</li>
<li>&lt;400&gt; 25
<img id="ib0053" file="imgb0053.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 26<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed peptide sequence</li>
<li>&lt;400&gt; 26
<img id="ib0054" file="imgb0054.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
</ul>
<ul id="ul0007" list-style="none">
<li>&lt;210&gt; 27<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed peptide sequence</li>
<li>&lt;400&gt; 27
<img id="ib0055" file="imgb0055.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 28<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed peptide sequence</li>
<li>&lt;400&gt; 28
<img id="ib0056" file="imgb0056.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 29<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
<!-- EPO <DP n="84"> -->&lt;223&gt; An artificially synt hesi zed pept i de sequence</li>
<li>&lt;400&gt; 29
<img id="ib0057" file="imgb0057.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 30<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed peptide sequence</li>
<li>&lt;400&gt; 30
<img id="ib0058" file="imgb0058.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 31<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 31
<img id="ib0059" file="imgb0059.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 32<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed peptide sequence</li>
<li>&lt;400&gt; 32
<img id="ib0060" file="imgb0060.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 33<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized pept i de sequence</li>
<li>&lt;400&gt; 33
<img id="ib0061" file="imgb0061.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 34<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial<!-- EPO <DP n="85"> --></li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An art i f i ci ally synt hesi zed peptide sequence</li>
<li>&lt;400&gt; 34
<img id="ib0062" file="imgb0062.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 35<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed peptide sequence</li>
<li>&lt;400&gt; 35
<img id="ib0063" file="imgb0063.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 36<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed peptide sequence</li>
<li>&lt;400&gt; 36
<img id="ib0064" file="imgb0064.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 37<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed peptide sequence</li>
<li>&lt;400&gt; 37
<img id="ib0065" file="imgb0065.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 38<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 38
<img id="ib0066" file="imgb0066.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 39<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial<!-- EPO <DP n="86"> --></li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 39
<img id="ib0067" file="imgb0067.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 40<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed peptide sequence</li>
<li>&lt;400&gt; 40
<img id="ib0068" file="imgb0068.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 41<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 41
<img id="ib0069" file="imgb0069.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 42<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 42
<img id="ib0070" file="imgb0070.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 43<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 43
<img id="ib0071" file="imgb0071.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 44<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
<!-- EPO <DP n="87"> -->&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed peptide sequence</li>
<li>&lt;400&gt; 44
<img id="ib0072" file="imgb0072.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 45<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized pept i de sequence</li>
<li>&lt;400&gt; 45
<img id="ib0073" file="imgb0073.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 46<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed peptide sequence</li>
<li>&lt;400&gt; 46
<img id="ib0074" file="imgb0074.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 47<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed pept i de sequence</li>
<li>&lt;400&gt; 47
<img id="ib0075" file="imgb0075.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 48<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 48
<img id="ib0076" file="imgb0076.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 49<br/>
&lt;211&gt; 10<br/>
<!-- EPO <DP n="88"> -->&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 49
<img id="ib0077" file="imgb0077.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 50<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 50
<img id="ib0078" file="imgb0078.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 51<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 51
<img id="ib0079" file="imgb0079.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 52<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 52
<img id="ib0080" file="imgb0080.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 53<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 53
<img id="ib0081" file="imgb0081.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 54<br/>
<!-- EPO <DP n="89"> -->&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 54
<img id="ib0082" file="imgb0082.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 55<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed peptide sequence</li>
<li>&lt;400&gt; 55
<img id="ib0083" file="imgb0083.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
</ul>
<ul id="ul0008" list-style="none">
<li>&lt;210&gt; 56<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed peptide sequence</li>
<li>&lt;400&gt; 56
<img id="ib0084" file="imgb0084.tif" wi="79" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 57<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 57
<img id="ib0085" file="imgb0085.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 58<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed pept i de sequence</li>
<li>&lt;400&gt; 58
<img id="ib0086" file="imgb0086.tif" wi="81" he="8" img-content="dna" img-format="tif"/><!-- EPO <DP n="90"> --></li>
<li>&lt;210&gt; 59<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed peptide sequence</li>
<li>&lt;400&gt; 59
<img id="ib0087" file="imgb0087.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 60<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 60
<img id="ib0088" file="imgb0088.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 61<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 61
<img id="ib0089" file="imgb0089.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 62<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 62
<img id="ib0090" file="imgb0090.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 63<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 63
<img id="ib0091" file="imgb0091.tif" wi="81" he="8" img-content="dna" img-format="tif"/><!-- EPO <DP n="91"> --></li>
<li>&lt;210&gt; 64<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 64
<img id="ib0092" file="imgb0092.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 65<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed peptide sequence</li>
<li>&lt;400&gt; 65
<img id="ib0093" file="imgb0093.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 66<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Art i f i ci al</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized pept i de sequence</li>
<li>&lt;400&gt; 66
<img id="ib0094" file="imgb0094.tif" wi="79" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 67<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 67
<img id="ib0095" file="imgb0095.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 68<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized pept i de sequence</li>
<li>&lt;400&gt; 68
<img id="ib0096" file="imgb0096.tif" wi="72" he="8" img-content="dna" img-format="tif"/><!-- EPO <DP n="92"> --></li>
<li>&lt;210&gt; 69<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 69
<img id="ib0097" file="imgb0097.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 70<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 70
<img id="ib0098" file="imgb0098.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 71<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Art i f i ci al</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 71
<img id="ib0099" file="imgb0099.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 72<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 72
<img id="ib0100" file="imgb0100.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 73<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 73
<img id="ib0101" file="imgb0101.tif" wi="72" he="5" img-content="dna" img-format="tif"/><!-- EPO <DP n="93"> -->
<img id="ib0102" file="imgb0102.tif" wi="35" he="4" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 74<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 74
<img id="ib0103" file="imgb0103.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 75<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed peptide sequence</li>
<li>&lt;400&gt; 75
<img id="ib0104" file="imgb0104.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 76<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 76
<img id="ib0105" file="imgb0105.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 77<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 77
<img id="ib0106" file="imgb0106.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 78<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 78<!-- EPO <DP n="94"> -->
<img id="ib0107" file="imgb0107.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 79<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 79
<img id="ib0108" file="imgb0108.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 80<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 80
<img id="ib0109" file="imgb0109.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 81<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed peptide sequence</li>
<li>&lt;400&gt; 81
<img id="ib0110" file="imgb0110.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 82<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 82
<img id="ib0111" file="imgb0111.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 83<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 83<!-- EPO <DP n="95"> -->
<img id="ib0112" file="imgb0112.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 84<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 84
<img id="ib0113" file="imgb0113.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 85<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 85
<img id="ib0114" file="imgb0114.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 86<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 86
<img id="ib0115" file="imgb0115.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 87<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed peptide sequence</li>
<li>&lt;400&gt; 87
<img id="ib0116" file="imgb0116.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 88<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence<!-- EPO <DP n="96"> --></li>
<li>&lt;400&gt; 88
<img id="ib0117" file="imgb0117.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 89<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 89
<img id="ib0118" file="imgb0118.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 90<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 90
<img id="ib0119" file="imgb0119.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
</ul>
<ul id="ul0009" list-style="none">
<li>&lt;210&gt; 91<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 91
<img id="ib0120" file="imgb0120.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 92<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 92
<img id="ib0121" file="imgb0121.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 93<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence<!-- EPO <DP n="97"> --></li>
<li>&lt;400&gt; 93
<img id="ib0122" file="imgb0122.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 94<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 94
<img id="ib0123" file="imgb0123.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 95<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 95
<img id="ib0124" file="imgb0124.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 96<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized pept i de sequence</li>
<li>&lt;400&gt; 96
<img id="ib0125" file="imgb0125.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 97<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 97
<img id="ib0126" file="imgb0126.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 98<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
<!-- EPO <DP n="98"> -->&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 98
<img id="ib0127" file="imgb0127.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 99<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized pepti de sequence</li>
<li>&lt;400&gt; 99
<img id="ib0128" file="imgb0128.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 100<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 100
<img id="ib0129" file="imgb0129.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 101<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 101
<img id="ib0130" file="imgb0130.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 102<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed peptide sequence</li>
<li>&lt;400&gt; 102
<img id="ib0131" file="imgb0131.tif" wi="71" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 103<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial<!-- EPO <DP n="99"> --></li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized pept i de sequence</li>
<li>&lt;400&gt; 103
<img id="ib0132" file="imgb0132.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 104<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed peptide sequence</li>
<li>&lt;400&gt; 104
<img id="ib0133" file="imgb0133.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 105<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 105
<img id="ib0134" file="imgb0134.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 106<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 106
<img id="ib0135" file="imgb0135.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 107<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 107
<img id="ib0136" file="imgb0136.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 108<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial<!-- EPO <DP n="100"> --></li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed peptide sequence</li>
<li>&lt;400&gt; 108
<img id="ib0137" file="imgb0137.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 109<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed peptide sequence</li>
<li>&lt;400&gt; 109
<img id="ib0138" file="imgb0138.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 110<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 110
<img id="ib0139" file="imgb0139.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 111<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 111
<img id="ib0140" file="imgb0140.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 112<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 112
<img id="ib0141" file="imgb0141.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 113<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
<!-- EPO <DP n="101"> -->&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 113
<img id="ib0142" file="imgb0142.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 114<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 114
<img id="ib0143" file="imgb0143.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 115<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 115
<img id="ib0144" file="imgb0144.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 116<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 116
<img id="ib0145" file="imgb0145.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 117<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 117
<img id="ib0146" file="imgb0146.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 118<br/>
&lt;211&gt; 9<br/>
<!-- EPO <DP n="102"> -->&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed peptide sequence</li>
<li>&lt;400&gt; 118
<img id="ib0147" file="imgb0147.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 119<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized pept i de sequence</li>
<li>&lt;400&gt; 119
<img id="ib0148" file="imgb0148.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 120<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An art i f i ci ally synthesized peptide sequence</li>
<li>&lt;400&gt; 120
<img id="ib0149" file="imgb0149.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 121<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed pept i de sequence</li>
<li>&lt;400&gt; 121
<img id="ib0150" file="imgb0150.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 122<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 122
<img id="ib0151" file="imgb0151.tif" wi="79" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 123<br/>
<!-- EPO <DP n="103"> -->&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An Artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 123
<img id="ib0152" file="imgb0152.tif" wi="79" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 124<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Art i f i ci al</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 124
<img id="ib0153" file="imgb0153.tif" wi="79" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 125<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An art i f i ci ally synthesized peptide sequence</li>
<li>&lt;400&gt; 125
<img id="ib0154" file="imgb0154.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
</ul>
<ul id="ul0010" list-style="none">
<li>&lt;210&gt; 126<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 126
<img id="ib0155" file="imgb0155.tif" wi="79" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 127<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized pept i de sequence</li>
<li>&lt;400&gt; 127
<img id="ib0156" file="imgb0156.tif" wi="81" he="8" img-content="dna" img-format="tif"/><!-- EPO <DP n="104"> --></li>
<li>&lt;210&gt; 128<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Art i f i ci al</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized pept i de sequence</li>
<li>&lt;400&gt; 128
<img id="ib0157" file="imgb0157.tif" wi="79" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 129<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 129
<img id="ib0158" file="imgb0158.tif" wi="79" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 130<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized pept i de sequence</li>
<li>&lt;400&gt; 130
<img id="ib0159" file="imgb0159.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 131<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized pept i de sequence</li>
<li>&lt;400&gt; 131
<img id="ib0160" file="imgb0160.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 132<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed peptide sequence</li>
<li>&lt;400&gt; 132
<img id="ib0161" file="imgb0161.tif" wi="79" he="8" img-content="dna" img-format="tif"/><!-- EPO <DP n="105"> --></li>
<li>&lt;210&gt; 133<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed peptide sequence</li>
<li>&lt;400&gt; 133
<img id="ib0162" file="imgb0162.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 134<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 134
<img id="ib0163" file="imgb0163.tif" wi="79" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 135<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 135
<img id="ib0164" file="imgb0164.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 136<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 136
<img id="ib0165" file="imgb0165.tif" wi="79" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 137<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 137
<img id="ib0166" file="imgb0166.tif" wi="79" he="8" img-content="dna" img-format="tif"/><!-- EPO <DP n="106"> --></li>
<li>&lt;210&gt; 138<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An art i f i ci ally synthesized peptide sequence</li>
<li>&lt;400&gt; 138
<img id="ib0167" file="imgb0167.tif" wi="79" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 139<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed peptide sequence</li>
<li>&lt;400&gt; 139
<img id="ib0168" file="imgb0168.tif" wi="79" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 140<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed pept i de sequence</li>
<li>&lt;400&gt; 140
<img id="ib0169" file="imgb0169.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 141<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 141
<img id="ib0170" file="imgb0170.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 142<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized pept i de sequence</li>
<li>&lt;400&gt; 142
<img id="ib0171" file="imgb0171.tif" wi="79" he="5" img-content="dna" img-format="tif"/><!-- EPO <DP n="107"> -->
<img id="ib0172" file="imgb0172.tif" wi="78" he="4" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 143<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 143
<img id="ib0173" file="imgb0173.tif" wi="79" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 144<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 144
<img id="ib0174" file="imgb0174.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 145<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized pept i de sequence</li>
<li>&lt;400&gt; 145
<img id="ib0175" file="imgb0175.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 146<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized pept i de sequence</li>
<li>&lt;400&gt; 146
<img id="ib0176" file="imgb0176.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 147<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 147<!-- EPO <DP n="108"> -->
<img id="ib0177" file="imgb0177.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 148<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 148
<img id="ib0178" file="imgb0178.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 149<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 149
<img id="ib0179" file="imgb0179.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 150<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 150
<img id="ib0180" file="imgb0180.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 151<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 151
<img id="ib0181" file="imgb0181.tif" wi="79" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 152<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 152<!-- EPO <DP n="109"> -->
<img id="ib0182" file="imgb0182.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 153<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 153
<img id="ib0183" file="imgb0183.tif" wi="79" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 154<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 154
<img id="ib0184" file="imgb0184.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 155<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 155
<img id="ib0185" file="imgb0185.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 156<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 156
<img id="ib0186" file="imgb0186.tif" wi="79" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 157<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence<!-- EPO <DP n="110"> --></li>
<li>&lt;400&gt; 157
<img id="ib0187" file="imgb0187.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 158<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 158
<img id="ib0188" file="imgb0188.tif" wi="79" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 159<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 159
<img id="ib0189" file="imgb0189.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 160<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 160
<img id="ib0190" file="imgb0190.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 161<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized pept i de sequence</li>
<li>&lt;400&gt; 161
<img id="ib0191" file="imgb0191.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 162<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence<!-- EPO <DP n="111"> --></li>
<li>&lt;400&gt; 162
<img id="ib0192" file="imgb0192.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 163<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 163
<img id="ib0193" file="imgb0193.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 164<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 164
<img id="ib0194" file="imgb0194.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 165<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 165
<img id="ib0195" file="imgb0195.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
</ul>
<ul id="ul0011" list-style="none">
<li>&lt;210&gt; 166<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 166
<img id="ib0196" file="imgb0196.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 167<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
<!-- EPO <DP n="112"> -->&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 167
<img id="ib0197" file="imgb0197.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 168<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially y synt hesi zed peptide sequence</li>
<li>&lt;400&gt; 168
<img id="ib0198" file="imgb0198.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 169<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 169
<img id="ib0199" file="imgb0199.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 170<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 170
<img id="ib0200" file="imgb0200.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 171<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 171
<img id="ib0201" file="imgb0201.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 172<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial<!-- EPO <DP n="113"> --></li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 172
<img id="ib0202" file="imgb0202.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 173<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 173
<img id="ib0203" file="imgb0203.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 174<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 174
<img id="ib0204" file="imgb0204.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 175<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 175
<img id="ib0205" file="imgb0205.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 176<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed pept i de sequence</li>
<li>&lt;400&gt; 176
<img id="ib0206" file="imgb0206.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 177<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial<!-- EPO <DP n="114"> --></li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 177
<img id="ib0207" file="imgb0207.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 178<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed peptide sequence</li>
<li>&lt;400&gt; 178
<img id="ib0208" file="imgb0208.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 179<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized pept i de sequence</li>
<li>&lt;400&gt; 179
<img id="ib0209" file="imgb0209.tif" wi="79" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 180<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 180
<img id="ib0210" file="imgb0210.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 181<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 181
<img id="ib0211" file="imgb0211.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 182<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
<!-- EPO <DP n="115"> -->&lt;213&gt; Art i f i ci al</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 182
<img id="ib0212" file="imgb0212.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 183<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 183
<img id="ib0213" file="imgb0213.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 184<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 184
<img id="ib0214" file="imgb0214.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 185<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 185
<img id="ib0215" file="imgb0215.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 186<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 186
<img id="ib0216" file="imgb0216.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 187<br/>
&lt;211&gt; 10<br/>
<!-- EPO <DP n="116"> -->&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 187
<img id="ib0217" file="imgb0217.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 188<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed peptide sequence</li>
<li>&lt;400&gt; 188
<img id="ib0218" file="imgb0218.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 189<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed peptide sequence</li>
<li>&lt;400&gt; 189
<img id="ib0219" file="imgb0219.tif" wi="79" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 190<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized zed peptide sequence</li>
<li>&lt;400&gt; 190
<img id="ib0220" file="imgb0220.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 191<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 191
<img id="ib0221" file="imgb0221.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 192<br/>
<!-- EPO <DP n="117"> -->&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 192
<img id="ib0222" file="imgb0222.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 193<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 193
<img id="ib0223" file="imgb0223.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 194<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 194
<img id="ib0224" file="imgb0224.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 195<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 195
<img id="ib0225" file="imgb0225.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 196<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed pept i de sequence</li>
<li>&lt;400&gt; 196
<img id="ib0226" file="imgb0226.tif" wi="72" he="8" img-content="dna" img-format="tif"/><!-- EPO <DP n="118"> --></li>
<li>&lt;210&gt; 197<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed peptide sequence</li>
<li>&lt;400&gt; 197
<img id="ib0227" file="imgb0227.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 198<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 198
<img id="ib0228" file="imgb0228.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 199<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed peptide sequence</li>
<li>&lt;400&gt; 199
<img id="ib0229" file="imgb0229.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 200<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 200
<img id="ib0230" file="imgb0230.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 201<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 201
<img id="ib0231" file="imgb0231.tif" wi="72" he="8" img-content="dna" img-format="tif"/><!-- EPO <DP n="119"> --></li>
<li>&lt;210&gt; 202<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed peptide sequence</li>
<li>&lt;400&gt; 202
<img id="ib0232" file="imgb0232.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 203<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 203
<img id="ib0233" file="imgb0233.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 204<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 204
<img id="ib0234" file="imgb0234.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 205<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially y synt hesi zed peptide sequence</li>
<li>&lt;400&gt; 205
<img id="ib0235" file="imgb0235.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 206<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed pept i de sequence</li>
<li>&lt;400&gt; 206
<img id="ib0236" file="imgb0236.tif" wi="72" he="8" img-content="dna" img-format="tif"/><!-- EPO <DP n="120"> --></li>
<li>&lt;210&gt; 207<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed peptide sequence</li>
<li>&lt;400&gt; 207
<img id="ib0237" file="imgb0237.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 208<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed peptide sequence</li>
<li>&lt;400&gt; 208
<img id="ib0238" file="imgb0238.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 209<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 209
<img id="ib0239" file="imgb0239.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 210<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed peptide sequence</li>
<li>&lt;400&gt; 210
<img id="ib0240" file="imgb0240.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 211<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed pept i de sequence</li>
<li>&lt;400&gt; 211
<img id="ib0241" file="imgb0241.tif" wi="72" he="5" img-content="dna" img-format="tif"/><!-- EPO <DP n="121"> -->
<img id="ib0242" file="imgb0242.tif" wi="35" he="4" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 212<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 212
<img id="ib0243" file="imgb0243.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 213<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized pept i de sequence</li>
<li>&lt;400&gt; 213
<img id="ib0244" file="imgb0244.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 214<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 214
<img id="ib0245" file="imgb0245.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
</ul>
<ul id="ul0012" list-style="none">
<li>&lt;210&gt; 215<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 215
<img id="ib0246" file="imgb0246.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 216<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 216<!-- EPO <DP n="122"> -->
<img id="ib0247" file="imgb0247.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 217<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 217
<img id="ib0248" file="imgb0248.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 218<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized hesi zed peptide sequence</li>
<li>&lt;400&gt; 218
<img id="ib0249" file="imgb0249.tif" wi="71" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 219<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 219
<img id="ib0250" file="imgb0250.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 220<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 220
<img id="ib0251" file="imgb0251.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 221<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 221<!-- EPO <DP n="123"> -->
<img id="ib0252" file="imgb0252.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 222<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed peptide sequence</li>
<li>&lt;400&gt; 222
<img id="ib0253" file="imgb0253.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 223<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed peptide sequence</li>
<li>&lt;400&gt; 223
<img id="ib0254" file="imgb0254.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 224<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed peptide sequence</li>
<li>&lt;400&gt; 224
<img id="ib0255" file="imgb0255.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 225<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 225
<img id="ib0256" file="imgb0256.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 226<br/>
&lt;211&gt; 9<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence<!-- EPO <DP n="124"> --></li>
<li>&lt;400&gt; 226
<img id="ib0257" file="imgb0257.tif" wi="72" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 227<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 227
<img id="ib0258" file="imgb0258.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 228<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed peptide sequence</li>
<li>&lt;400&gt; 228
<img id="ib0259" file="imgb0259.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 229<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 229
<img id="ib0260" file="imgb0260.tif" wi="79" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 230<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 230
<img id="ib0261" file="imgb0261.tif" wi="78" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 231<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence<!-- EPO <DP n="125"> --></li>
<li>&lt;400&gt; 231
<img id="ib0262" file="imgb0262.tif" wi="79" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 232<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 232
<img id="ib0263" file="imgb0263.tif" wi="79" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 233<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed peptide sequence</li>
<li>&lt;400&gt; 233
<img id="ib0264" file="imgb0264.tif" wi="79" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 234<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 234
<img id="ib0265" file="imgb0265.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 235<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 235
<img id="ib0266" file="imgb0266.tif" wi="79" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 236<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
<!-- EPO <DP n="126"> -->&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 236
<img id="ib0267" file="imgb0267.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 237<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 237
<img id="ib0268" file="imgb0268.tif" wi="79" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 238<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 238
<img id="ib0269" file="imgb0269.tif" wi="79" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 239<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 239
<img id="ib0270" file="imgb0270.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 240<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 240
<img id="ib0271" file="imgb0271.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 241<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial<!-- EPO <DP n="127"> --></li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed peptide sequence</li>
<li>&lt;400&gt; 241
<img id="ib0272" file="imgb0272.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 242<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed peptide sequence</li>
<li>&lt;400&gt; 242
<img id="ib0273" file="imgb0273.tif" wi="79" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 243<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 243
<img id="ib0274" file="imgb0274.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 244<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 244
<img id="ib0275" file="imgb0275.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 245<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 245
<img id="ib0276" file="imgb0276.tif" wi="79" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 246<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial<!-- EPO <DP n="128"> --></li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed pept i de sequence</li>
<li>&lt;400&gt; 246
<img id="ib0277" file="imgb0277.tif" wi="79" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 247<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 247
<img id="ib0278" file="imgb0278.tif" wi="79" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 248<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 248
<img id="ib0279" file="imgb0279.tif" wi="79" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 249<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially y synt hesi zed peptide sequence</li>
<li>&lt;400&gt; 249
<img id="ib0280" file="imgb0280.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 250<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synt hesi zed pept i de sequence</li>
<li>&lt;400&gt; 250
<img id="ib0281" file="imgb0281.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 251<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
<!-- EPO <DP n="129"> -->&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 251
<img id="ib0282" file="imgb0282.tif" wi="79" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 252<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially y synthesized peptide sequence</li>
<li>&lt;400&gt; 252
<img id="ib0283" file="imgb0283.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 253<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 253
<img id="ib0284" file="imgb0284.tif" wi="79" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 254<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially y synt hesi zed peptide sequence</li>
<li>&lt;400&gt; 254
<img id="ib0285" file="imgb0285.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
<li>&lt;210&gt; 255<br/>
&lt;211&gt; 10<br/>
&lt;212&gt; PRT<br/>
&lt;213&gt; Artificial</li>
<li>&lt;220&gt;<br/>
&lt;223&gt; An artificially synthesized peptide sequence</li>
<li>&lt;400&gt; 255
<img id="ib0286" file="imgb0286.tif" wi="81" he="8" img-content="dna" img-format="tif"/></li>
</ul></p>
</description>
<claims id="claims01" lang="en"><!-- EPO <DP n="130"> --><!-- EPO <DP n="131"> -->
<claim id="c-en-01-0001" num="0001">
<claim-text>A peptide of the following (a) or (b)
<claim-text>(a) a peptide having cytotoxic T cell inducibility, wherein said peptide is derived from the amino acid sequence of SEQ ID NO: 2, wherein said peptide is of less than about 15 amino acids and is selected from the group consisting of peptides comprising the amino acid sequences of SEQ ID NO: 7 or 8; or</claim-text>
<claim-text>(b) the peptide of (a) in which 1 or 2 amino acids are substituted, deleted or added, in the sequence of SEQ ID NO: 7 or 8.</claim-text></claim-text></claim>
<claim id="c-en-01-0002" num="0002">
<claim-text>The peptide of claim 1(b), wherein the peptide comprising the amino acid sequence selected from the group consisting of SEQ ID NO: 7 and 8 has at least one substitution in the sequence of SEQ ID NO: 7 or 8 selected from the group consisting of:
<claim-text>(a) the second amino acid from the N-terminus is phenylalanine, tyrosine, methionine, or tryptophan, and</claim-text>
<claim-text>(b) the C-terminal amino acid is phenylalanine, leucine, isoleucine, tryptophan, or methionine.</claim-text></claim-text></claim>
<claim id="c-en-01-0003" num="0003">
<claim-text>The peptide of claim I of the following (a) or (b):
<claim-text>(a) a peptide consisting of the amino acid sequence of SEQ ID NO: 7 or 8; or</claim-text>
<claim-text>(b) a peptide consisting of the amino acid sequence of SEQ ID NO: 7 or 8 in which 1 or 2 amino acids are substituted, deleted, or added.</claim-text></claim-text></claim>
<claim id="c-en-01-0004" num="0004">
<claim-text>The peptide of claim 3(b), wherein the peptide consisting of the amino acid sequence selected from the group consisting of SEQ ID NO: 7 and 8 has at least one substitution selected from the group consisting of:
<claim-text>(a) the second amino acid from the N-terminus is phenylalanine, tyrosine, methionine, or tryptophan, and</claim-text>
<claim-text>(b) the C-terminal amino acid is phenylalanine, leucine, isoleucine, tryptophan, or<!-- EPO <DP n="132"> --> methionine.</claim-text></claim-text></claim>
<claim id="c-en-01-0005" num="0005">
<claim-text>A vector comprising DNA encoding the peptide of any one of claims 1 to 4.</claim-text></claim>
<claim id="c-en-01-0006" num="0006">
<claim-text>A pharmaceutical composition for use in treating or preventing a disease associated with over-expression of the gene of SEQ ID NO: 1, said composition comprising one or more of the peptides of any one of claims 1 to 4.</claim-text></claim>
<claim id="c-en-01-0007" num="0007">
<claim-text>The pharmaceutical composition of claim 6 for use in treating or preventing cancer.</claim-text></claim>
<claim id="c-en-01-0008" num="0008">
<claim-text>A vaccine for use in inhibiting proliferation of cells expressing gene of SEQ ID NO: 1 comprising a peptide of any one of claims 1 to 4 as the active ingredient.</claim-text></claim>
<claim id="c-en-01-0009" num="0009">
<claim-text>The vaccine of claim 8, formulated for administration to a subject whose HLA antigen is HLA-A24.</claim-text></claim>
<claim id="c-en-01-0010" num="0010">
<claim-text>The vaccine of claim 8 or 9, wherein the cells are cancer cells.</claim-text></claim>
<claim id="c-en-01-0011" num="0011">
<claim-text>The peptide of any one of claims 1 to 4 for use in treating or preventing cancer in a subject.</claim-text></claim>
<claim id="c-en-01-0012" num="0012">
<claim-text>Use of the peptide of any one of claims 1 to 4 in the preparation of a vaccine for treating or preventing cancer in a subject.</claim-text></claim>
<claim id="c-en-01-0013" num="0013">
<claim-text>The pharmaceutical composition of claim 7, vaccine of claim 10, the peptide for use as defined in claim 11 or the use of claim 12, wherein the cancer is selected from the group consisting of bladder cancer, breast cancer, cervical cancer, cholangiocellular carcinoma, CML, colorectal cancer, gastric cancer, NSCLC, lymphoma, osteosarcoma, prostate cancer, renal carcinoma, SCLC and soft tissue tumor.</claim-text></claim>
<claim id="c-en-01-0014" num="0014">
<claim-text>The peptide of any one of claims 1 to 4 for use in inducing antigen-presenting cells having a high cytotoxic T cell inducibility by contacting an antigen-presenting cell<!-- EPO <DP n="133"> --> with said peptide.</claim-text></claim>
<claim id="c-en-01-0015" num="0015">
<claim-text>The peptide of any one of claims 1 to 4 for use in inducing cytotoxic T cells by contacting a T cell with said peptide.</claim-text></claim>
<claim id="c-en-01-0016" num="0016">
<claim-text>A polynucleotide encoding the peptide of any one of claims 1 to 4 for use in inducing antigen-presenting cells having high cytotoxic T cell inducibility, by transferring the gene comprising a polynucleotide encoding said peptide to an antigen-presenting cell.</claim-text></claim>
<claim id="c-en-01-0017" num="0017">
<claim-text>An in vitro method of inducing antigen-presenting cells having a high cytotoxic T cell inducibility comprising the step of contacting an antigen-presenting cell with the peptide of any one of claims 1 to 4.</claim-text></claim>
<claim id="c-en-01-0018" num="0018">
<claim-text>An in vitro method of inducing antigen-presenting cells having high cytotoxic T cell inducibility, said method comprising the step of transferring a polynucleotide encoding the peptide of any one of claims 1 to 4 to an antigen-presenting cell.</claim-text></claim>
<claim id="c-en-01-0019" num="0019">
<claim-text>A cytotoxic T cell induced by contacting a T cell with a peptide of any one of claims 1 to 4 or transduced with the nucleic acids encoding the T cell receptor subunit polypeptides binding with said peptide.</claim-text></claim>
<claim id="c-en-01-0020" num="0020">
<claim-text>An antigen-presenting cell comprising a complex of an HLA antigen and a peptide of any one of claims 1 to 4.</claim-text></claim>
<claim id="c-en-01-0021" num="0021">
<claim-text>The antigen-presenting cell of claim 20, produced by the peptide of claim 14 or the polynucleotide of claim 16.</claim-text></claim>
<claim id="c-en-01-0022" num="0022">
<claim-text>An exosome that presents on its surface a complex comprising a peptide of any one of the claims 1 to 4 and an HLA antigen.</claim-text></claim>
<claim id="c-en-01-0023" num="0023">
<claim-text>The exosome of claim 22 or the antigen-presenting cell of claim 20 or 21, wherein the HLA antigen is HLA-A24.<!-- EPO <DP n="134"> --></claim-text></claim>
<claim id="c-en-01-0024" num="0024">
<claim-text>The exosome or antigen-presenting cell of claim 23, wherein the HLA antigen is HLA-A2402.</claim-text></claim>
</claims>
<claims id="claims02" lang="de"><!-- EPO <DP n="135"> --><!-- EPO <DP n="136"> -->
<claim id="c-de-01-0001" num="0001">
<claim-text>Peptid gemäß den folgenden (a) oder (b)
<claim-text>(a) ein Peptid, das die Fähigkeit cytotoxische T-Zellen zu induzieren hat, wobei das Peptid von der Aminosäuresequenz der SEQ ID NO:2 abgeleitet ist, wobei das Peptid weniger als 15 Aminosäuren aufweist und ausgewählt ist aus der Gruppe bestehend aus Peptiden, die die Aminosäuresequenzen der SEQ ID NO:7 oder 8 umfassen; oder</claim-text>
<claim-text>(b) das Peptid gemäß (a), in dem 1 oder 2 Aminosäuren in der Sequenz der SEQ ID NO:7 oder 8 substituiert, deletiert oder hinzugefügt sind.</claim-text></claim-text></claim>
<claim id="c-de-01-0002" num="0002">
<claim-text>Peptid nach Anspruch 1 (b), wobei das Peptid, das die Aminosäuresequenz umfasst, die ausgewählt ist aus der Gruppe bestehend aus SEQ ID NO:7 und 8, mindestens eine Substitution in der Sequenz der SEQ ID NO:7 oder 8 aufweist, die ausgewählt ist aus der Gruppe bestehend aus:
<claim-text>(a) die zweite Aminosäuresequenz vom N-Terminus aus ist Phenylalanin, Tyrosin, Methionin oder Tryptophan, und</claim-text>
<claim-text>(b) die C-terminale Aminosäure ist Phenylalanin, Leucin, Isoleucin, Tryptophan oder Methionin.</claim-text></claim-text></claim>
<claim id="c-de-01-0003" num="0003">
<claim-text>Peptid nach Anspruch 1 gemäß den folgenden (a) oder (b):
<claim-text>(a) ein Peptid, das aus der Aminosäuresequenz der SEQ ID NO:7 oder 8 besteht; oder</claim-text>
<claim-text>(b) ein Peptid, das aus der Aminosäuresequenz der SEQ ID NO:7 oder 8 besteht, in der 1 oder 2 Aminosäuren substituiert, deletiert oder hinzugefügt sind.</claim-text></claim-text></claim>
<claim id="c-de-01-0004" num="0004">
<claim-text>Peptid nach Anspruch 3(b), wobei das Peptid, das aus der Aminosäuresequenz besteht, die ausgewählt ist aus der Gruppe bestehend aus SEQ ID NO:7 und 8, mindestens eine Substitution aufweist, die ausgewählt ist aus der Gruppe bestehend aus:
<claim-text>(a) die zweite Aminosäuresequenz vom N-Terminus aus ist Phenylalanin, Tyrosin, Methionin oder Tryptophan, und<!-- EPO <DP n="137"> --></claim-text>
<claim-text>(b) die C-terminale Aminosäure ist Phenylalanin, Leucin, Isoleucin, Tryptophan oder Methionin.</claim-text></claim-text></claim>
<claim id="c-de-01-0005" num="0005">
<claim-text>Vektor, umfassend die DNA, die das Peptid nach einem der Ansprüche 1 bis 4 codiert.</claim-text></claim>
<claim id="c-de-01-0006" num="0006">
<claim-text>Arzneimittel zur Verwendung bei der Behandlung oder Prävention einer Erkrankung, die mit Überexpression des Gens der SEQ ID NO:1 in Zusammenhang steht, wobei das Arzneimittel ein oder mehrere der Peptide nach einem der Ansprüche 1 bis 4 umfasst.</claim-text></claim>
<claim id="c-de-01-0007" num="0007">
<claim-text>Arzneimittel nach Anspruch 6 zur Verwendung bei der Behandlung oder Prävention von Krebs.</claim-text></claim>
<claim id="c-de-01-0008" num="0008">
<claim-text>Impfstoff zur Verwendung bei der Inhibierung der Proliferation von Zellen, die das Gen der SEQ ID NO:1 exprimieren, umfassend ein Peptid nach einem der Ansprüche 1 bis 4 als Wirkstoff.</claim-text></claim>
<claim id="c-de-01-0009" num="0009">
<claim-text>Impfstoff nach Anspruch 8, der für die Verabreichung an ein Individuum formuliert ist, dessen HLA-Antigen HLA-A24 ist.</claim-text></claim>
<claim id="c-de-01-0010" num="0010">
<claim-text>Impfstoff nach Anspruch 8 oder 9, wobei die Zellen Krebszellen sind.</claim-text></claim>
<claim id="c-de-01-0011" num="0011">
<claim-text>Peptid nach einem der Ansprüche 1 bis 4 zur Verwendung bei der Behandlung oder Prävention von Krebs bei einem Individuum.</claim-text></claim>
<claim id="c-de-01-0012" num="0012">
<claim-text>Verwendung des Peptids nach einem der Ansprüche 1 bis 4 bei der Herstellung eines Impfstoffs zur Behandlung oder Prävention von Krebs bei einem Individuum.</claim-text></claim>
<claim id="c-de-01-0013" num="0013">
<claim-text>Arzneimittel nach Anspruch 7, Impfstoff nach Anspruch 10, Peptid zur Verwendung wie in Anspruch 11 definiert oder Verwendung nach Anspruch 12, wobei die Krebserkrankung ausgewählt ist aus der Gruppe bestehend aus Blasenkrebs, Brustkrebs, Gebärmutterhalskrebs, cholangiozellulärem Karzinom, CML, kolorektalem Krebs, Magenkrebs, NSCLC, Lymphom, Osteosarkom, Prostatakrebs, Nierenkarzinom, SCLC und Weichteiltumor.</claim-text></claim>
<claim id="c-de-01-0014" num="0014">
<claim-text>Peptid nach einem der Ansprüche 1 bis 4 zur Verwendung bei der Induzierung von Antigen-präsentierenden Zellen, die in hohem Maße fähig sind,<!-- EPO <DP n="138"> --> cytotoxische T-Zellen zu induzieren, durch Inkontaktbringen einer Antigen-präsentierenden Zelle mit dem Peptid.</claim-text></claim>
<claim id="c-de-01-0015" num="0015">
<claim-text>Peptid nach einem der Ansprüche 1 bis 4 zur Verwendung bei der Induzierung cytotoxischer T-Zellen durch Inkontaktbringen einer T-Zelle mit dem Peptid.</claim-text></claim>
<claim id="c-de-01-0016" num="0016">
<claim-text>Polynucleotid, das das Peptid nach einem der Ansprüche 1 bis 4 codiert, zur Verwendung bei der Induzierung Antigen-präsentierender Zellen, die in hohem Maße fähig sind, cytotoxische T-Zellen zu induzieren, durch Transfer des Gens, das das Peptid codierende Polynucleotid umfasst, zu einer Antigen-präsentierenden Zelle.</claim-text></claim>
<claim id="c-de-01-0017" num="0017">
<claim-text>In vitro-Verfahren zum Induzieren Antigen-präsentierender Zellen, die in hohem Maße fähig sind, cytotoxische T-Zellen zu induzieren, umfassend den Schritt des Inkontaktbringens einer Antigen-präsentierenden Zelle mit dem Peptid nach einem der Ansprüche 1 bis 4.</claim-text></claim>
<claim id="c-de-01-0018" num="0018">
<claim-text>In vitro-Verfahren zum Induzieren Antigen-präsentierender Zellen, die in hohem Maße fähig sind, cytotoxische T-Zellen zu induzieren, wobei das Verfahren den Schritt des Transfers eines Polynucleotids, das das Peptid nach einem der Ansprüche 1 bis 4 codiert, zu einer Antigen-präsentierenden Zelle umfasst.</claim-text></claim>
<claim id="c-de-01-0019" num="0019">
<claim-text>Cytotoxische T-Zelle, die durch Inkontaktbringen einer T-Zelle mit einem Peptid nach einem der Ansprüche 1 bis 4 induziert wird oder mit den Nucleinsäuren transduziert wird, die die Polypeptide der T-Zellrezeptor-Untereinheit, die an das Peptid binden, codieren.</claim-text></claim>
<claim id="c-de-01-0020" num="0020">
<claim-text>Antigen-präsentierende Zelle, die einen Komplex aus einem HLA-Antigen und einem Peptid nach einem der Ansprüche 1 bis 4 umfasst.</claim-text></claim>
<claim id="c-de-01-0021" num="0021">
<claim-text>Antigen-präsentierende Zelle nach Anspruch 20, die durch das Peptid nach Anspruch 14 oder das Polynucleotid nach Anspruch 16 erzeugt wird.</claim-text></claim>
<claim id="c-de-01-0022" num="0022">
<claim-text>Exosom, das auf seiner Oberfläche einen Komplex präsentiert, der ein Peptid nach einem der Ansprüche 1 bis 4 und ein HLA-Antigen umfasst.</claim-text></claim>
<claim id="c-de-01-0023" num="0023">
<claim-text>Exosom nach Anspruch 22 oder Antigen-päsentierende Zelle nach Anspruch 20 oder 21, wobei das HLA-Antigen HLA-A24 ist.<!-- EPO <DP n="139"> --></claim-text></claim>
<claim id="c-de-01-0024" num="0024">
<claim-text>Exosom oder Antigen-präsentierende Zelle nach Anspruch 23, wobei das HLA-Antigen HLA-A2402 ist.</claim-text></claim>
</claims>
<claims id="claims03" lang="fr"><!-- EPO <DP n="140"> --><!-- EPO <DP n="141"> -->
<claim id="c-fr-01-0001" num="0001">
<claim-text>Peptide de (a) ou (b) ci-après
<claim-text>(a) un peptide ayant une inductibilité de lymphocytes T cytotoxiques, ledit peptide étant dérivé de la séquence d'acides aminés de SEQ ID NO: 2, ledit peptide étant de moins d'environ 15 acides aminés et choisi dans le groupe constitué de peptides comprenant les séquences d'acides aminés de SEQ ID NO: 7 ou 8 ; ou</claim-text>
<claim-text>(b) le peptide de (a), dans lequel 1 ou 2 acides aminés sont substitués, délétés ou ajoutés dans la séquence de SEQ ID NO: 7 ou 8.</claim-text></claim-text></claim>
<claim id="c-fr-01-0002" num="0002">
<claim-text>Peptide de la revendication 1(b), le peptide comprenant la séquence d'acides aminés choisie dans le groupe constitué de SEQ ID NO: 7 et 8 ayant au moins une substitution dans la séquence de SEQ ID NO: 7 ou 8 choisie dans le groupe constitué de :
<claim-text>(a) le deuxième acide aminé de l'extrémité-N est phénylalanine, tyrosine, méthionine, ou tryptophane, et</claim-text>
<claim-text>(b) l'acide aminé C-terminal est phénylalanine, leucine, isoleucine, tryptophane, ou méthionine.</claim-text></claim-text></claim>
<claim id="c-fr-01-0003" num="0003">
<claim-text>Peptide de la revendication 1 de (a) ou (b) ci-après :
<claim-text>(a) un peptide constitué de la séquence d'acides aminés SEQ ID NO: 7 ou 8 ; ou</claim-text>
<claim-text>(b) un peptide constitué de la séquence d'acides aminés SEQ ID NO: 7 ou 8, dans lequel 1 ou 2 acides aminés sont substitués, délétés ou ajoutés.</claim-text></claim-text></claim>
<claim id="c-fr-01-0004" num="0004">
<claim-text>Peptide de la revendication 3(b), le peptide constitué de la séquence d'acides aminés choisie dans le groupe constitué de SEQ ID NO: 7 et 8 ayant au moins une substitution choisie dans le groupe constitué de :
<claim-text>(a) le deuxième acide aminé de l'extrémité-N est phénylalanine, tyrosine, méthionine, ou tryptophane, et</claim-text>
<claim-text>(b) l'acide aminé C-terminal est phénylalanine, leucine, isoleucine, tryptophane, ou méthionine.</claim-text><!-- EPO <DP n="142"> --></claim-text></claim>
<claim id="c-fr-01-0005" num="0005">
<claim-text>Vecteur comprenant de l'ADN codant pour le peptide de l'une quelconque des revendications 1 à 4.</claim-text></claim>
<claim id="c-fr-01-0006" num="0006">
<claim-text>Composition pharmaceutique destinée à être utilisée dans le traitement ou la prévention d'une maladie associée à la surexpression du gène de SEQ ID NO: 1, ladite composition comprenant un ou plusieurs des peptides de l'une quelconque des revendications 1 à 4.</claim-text></claim>
<claim id="c-fr-01-0007" num="0007">
<claim-text>Composition pharmaceutique de la revendication 6, destinée à être utilisée dans le traitement ou la prévention du cancer.</claim-text></claim>
<claim id="c-fr-01-0008" num="0008">
<claim-text>Vaccin destiné à être utilisé dans l'inhibition de la prolifération de cellules exprimant le gène de SEQ ID NO: 1 comprenant un peptide de l'une quelconque des revendications 1 à 4 en tant qu'ingrédient actif.</claim-text></claim>
<claim id="c-fr-01-0009" num="0009">
<claim-text>Vaccin de la revendication 8, formulé pour être administré à un sujet dont l'antigène HLA est HLA-A24.</claim-text></claim>
<claim id="c-fr-01-0010" num="0010">
<claim-text>Vaccin de la revendication 8 ou 9, dans lequel les cellules sont des cellules cancéreuses.</claim-text></claim>
<claim id="c-fr-01-0011" num="0011">
<claim-text>Peptide de l'une quelconque des revendications 1 à 4, destiné à être utilisé dans le traitement ou la prévention du cancer chez un sujet.</claim-text></claim>
<claim id="c-fr-01-0012" num="0012">
<claim-text>Utilisation du peptide de l'une quelconque des revendications 1 à 4, dans la préparation d'un vaccin destiné à traiter ou prévenir le cancer chez un sujet.</claim-text></claim>
<claim id="c-fr-01-0013" num="0013">
<claim-text>Composition pharmaceutique de la revendication 7, vaccin de la revendication 10, peptide pour utilisation tel que défini dans la revendication 11 ou l'utilisation de la revendication 12, le cancer étant choisi dans le groupe constitué d'un cancer de la vessie, un cancer du sein, un cancer du col de l'utérus, un carcinome cholangiocellulaire, une LMC, un cancer colorectal, un cancer de l'estomac, un cancer du<!-- EPO <DP n="143"> --> poumon non à petites cellules, un lymphome, un ostéosarcome, un cancer de la prostate, un carcinome rénal, un cancer du poumon à petites cellules et une tumeur des tissus mous.</claim-text></claim>
<claim id="c-fr-01-0014" num="0014">
<claim-text>Peptide de l'une quelconque des revendications 1 à 4, destiné à être utilisé dans l'induction de cellules présentatrices d'antigène ayant une haute inductibilité de lymphocytes T cytotoxiques par mise en contact d'une cellule présentatrice d'antigène avec ledit peptide.</claim-text></claim>
<claim id="c-fr-01-0015" num="0015">
<claim-text>Peptide de l'une quelconque des revendications 1 à 4, destiné à être utilisé dans l'induction de lymphocytes T cytotoxiques par mise en contact d'un lymphocyte T avec ledit peptide.</claim-text></claim>
<claim id="c-fr-01-0016" num="0016">
<claim-text>Polynucléotide codant pour le peptide de l'une quelconque des revendications 1 à 4, destiné à être utilisé dans l'induction de cellules présentatrices d'antigène ayant une haute inductibilité de lymphocytes T cytotoxiques, par transfert du gène comprenant un polynucléotide codant pour ledit peptide vers une cellule présentatrice d'antigène.</claim-text></claim>
<claim id="c-fr-01-0017" num="0017">
<claim-text>Procédé <i>in vitro</i> d'induction de cellules présentatrices d'antigène ayant une haute inductibilité de lymphocytes T cytotoxiques, comprenant l'étape de mise en contact d'une cellule présentatrice d'antigène avec le peptide de l'une quelconque des revendications 1 à 4.</claim-text></claim>
<claim id="c-fr-01-0018" num="0018">
<claim-text>Procédé <i>in vitro</i> d'induction de cellules présentatrices d'antigène ayant une haute inductibilité de lymphocytes T cytotoxiques, ledit procédé comprenant l'étape de transfert d'un polynucléotide codant pour le peptide de l'une quelconque des revendications 1 à 4 vers une cellule présentatrice d'antigène.</claim-text></claim>
<claim id="c-fr-01-0019" num="0019">
<claim-text>Lymphocyte T cytotoxique induit par mise en contact d'un lymphocyte T avec un peptide de l'une quelconque des revendications 1 à 4 ou transduit avec les acides nucléiques codant pour les polypeptides de sous-unité de récepteur de lymphocyte T se liant audit peptide.<!-- EPO <DP n="144"> --></claim-text></claim>
<claim id="c-fr-01-0020" num="0020">
<claim-text>Cellule présentatrice d'antigène comprenant un complexe d'un antigène HLA et un peptide de l'une quelconque des revendications 1 à 4.</claim-text></claim>
<claim id="c-fr-01-0021" num="0021">
<claim-text>Cellule présentatrice d'antigène de la revendication 20, produite par le peptide de la revendication 14 ou le polynucléotide de la revendication 16.</claim-text></claim>
<claim id="c-fr-01-0022" num="0022">
<claim-text>Exosome qui présente sur sa surface un complexe comprenant un peptide de l'une quelconque des revendications 1 à 4 et un antigène HLA.</claim-text></claim>
<claim id="c-fr-01-0023" num="0023">
<claim-text>Exosome de la revendication 22 ou cellule présentatrice d'antigène de la revendication 20 ou 21, l'antigène HLA étant HLA-A24.</claim-text></claim>
<claim id="c-fr-01-0024" num="0024">
<claim-text>Exosome ou cellule présentatrice d'antigène de la revendication 23, l'antigène HLA étant HLA-A2402.</claim-text></claim>
</claims>
<drawings id="draw" lang="en"><!-- EPO <DP n="145"> -->
<figure id="f0001" num="1A,1B"><img id="if0001" file="imgf0001.tif" wi="165" he="199" img-content="drawing" img-format="tif"/></figure><!-- EPO <DP n="146"> -->
<figure id="f0002" num="2A,2B"><img id="if0002" file="imgf0002.tif" wi="165" he="199" img-content="drawing" img-format="tif"/></figure><!-- EPO <DP n="147"> -->
<figure id="f0003" num="3A,3B"><img id="if0003" file="imgf0003.tif" wi="165" he="225" img-content="drawing" img-format="tif"/></figure><!-- EPO <DP n="148"> -->
<figure id="f0004" num="4"><img id="if0004" file="imgf0004.tif" wi="153" he="225" img-content="drawing" img-format="tif"/></figure><!-- EPO <DP n="149"> -->
<figure id="f0005" num="5"><img id="if0005" file="imgf0005.tif" wi="165" he="217" img-content="drawing" img-format="tif"/></figure><!-- EPO <DP n="150"> -->
<figure id="f0006" num="6"><img id="if0006" file="imgf0006.tif" wi="129" he="231" img-content="drawing" img-format="tif"/></figure><!-- EPO <DP n="151"> -->
<figure id="f0007" num="7A,7B,7C"><img id="if0007" file="imgf0007.tif" wi="165" he="228" img-content="drawing" img-format="tif"/></figure><!-- EPO <DP n="152"> -->
<figure id="f0008" num="8A,8B,8C"><img id="if0008" file="imgf0008.tif" wi="165" he="220" img-content="drawing" img-format="tif"/></figure><!-- EPO <DP n="153"> -->
<figure id="f0009" num="9A,9B"><img id="if0009" file="imgf0009.tif" wi="165" he="202" img-content="drawing" img-format="tif"/></figure><!-- EPO <DP n="154"> -->
<figure id="f0010" num="10A,10B"><img id="if0010" file="imgf0010.tif" wi="165" he="204" img-content="drawing" img-format="tif"/></figure><!-- EPO <DP n="155"> -->
<figure id="f0011" num="11"><img id="if0011" file="imgf0011.tif" wi="165" he="223" img-content="drawing" img-format="tif"/></figure><!-- EPO <DP n="156"> -->
<figure id="f0012" num="12"><img id="if0012" file="imgf0012.tif" wi="165" he="231" img-content="drawing" img-format="tif"/></figure><!-- EPO <DP n="157"> -->
<figure id="f0013" num="13"><img id="if0013" file="imgf0013.tif" wi="165" he="231" img-content="drawing" img-format="tif"/></figure><!-- EPO <DP n="158"> -->
<figure id="f0014" num="14"><img id="if0014" file="imgf0014.tif" wi="165" he="231" img-content="drawing" img-format="tif"/></figure><!-- EPO <DP n="159"> -->
<figure id="f0015" num="15"><img id="if0015" file="imgf0015.tif" wi="150" he="233" img-content="drawing" img-format="tif"/></figure><!-- EPO <DP n="160"> -->
<figure id="f0016" num="16"><img id="if0016" file="imgf0016.tif" wi="165" he="145" img-content="drawing" img-format="tif"/></figure><!-- EPO <DP n="161"> -->
<figure id="f0017" num="17"><img id="if0017" file="imgf0017.tif" wi="165" he="186" img-content="drawing" img-format="tif"/></figure><!-- EPO <DP n="162"> -->
<figure id="f0018" num="18"><img id="if0018" file="imgf0018.tif" wi="108" he="179" img-content="drawing" img-format="tif"/></figure><!-- EPO <DP n="163"> -->
<figure id="f0019" num="19"><img id="if0019" file="imgf0019.tif" wi="148" he="231" img-content="drawing" img-format="tif"/></figure><!-- EPO <DP n="164"> -->
<figure id="f0020" num="20"><img id="if0020" file="imgf0020.tif" wi="100" he="189" img-content="drawing" img-format="tif"/></figure><!-- EPO <DP n="165"> -->
<figure id="f0021" num="21"><img id="if0021" file="imgf0021.tif" wi="165" he="233" img-content="drawing" img-format="tif"/></figure><!-- EPO <DP n="166"> -->
<figure id="f0022" num="22"><img id="if0022" file="imgf0022.tif" wi="161" he="233" img-content="drawing" img-format="tif"/></figure><!-- EPO <DP n="167"> -->
<figure id="f0023" num="23"><img id="if0023" file="imgf0023.tif" wi="165" he="175" img-content="drawing" img-format="tif"/></figure><!-- EPO <DP n="168"> -->
<figure id="f0024" num="24"><img id="if0024" file="imgf0024.tif" wi="157" he="233" img-content="drawing" img-format="tif"/></figure><!-- EPO <DP n="169"> -->
<figure id="f0025" num="25"><img id="if0025" file="imgf0025.tif" wi="108" he="181" img-content="drawing" img-format="tif"/></figure><!-- EPO <DP n="170"> -->
<figure id="f0026" num="26"><img id="if0026" file="imgf0026.tif" wi="160" he="185" img-content="drawing" img-format="tif"/></figure>
</drawings>
<ep-reference-list id="ref-list">
<heading id="ref-h0001"><b>REFERENCES CITED IN THE DESCRIPTION</b></heading>
<p id="ref-p0001" num=""><i>This list of references cited by the applicant is for the reader's convenience only. It does not form part of the European patent document. Even though great care has been taken in compiling the references, errors or omissions cannot be excluded and the EPO disclaims all liability in this regard.</i></p>
<heading id="ref-h0002"><b>Patent documents cited in the description</b></heading>
<p id="ref-p0002" num="">
<ul id="ref-ul0001" list-style="bullet">
<li><patcit id="ref-pcit0001" dnum="WO2004031413A"><document-id><country>WO</country><doc-number>2004031413</doc-number><kind>A</kind></document-id></patcit><crossref idref="pcit0001">[0005]</crossref></li>
<li><patcit id="ref-pcit0002" dnum="WO2006085684A"><document-id><country>WO</country><doc-number>2006085684</doc-number><kind>A</kind></document-id></patcit><crossref idref="pcit0002">[0005]</crossref></li>
<li><patcit id="ref-pcit0003" dnum="WO2007013665A"><document-id><country>WO</country><doc-number>2007013665</doc-number><kind>A</kind></document-id></patcit><crossref idref="pcit0003">[0005]</crossref></li>
<li><patcit id="ref-pcit0004" dnum="JP2006302684W"><document-id><country>JP</country><doc-number>2006302684</doc-number><kind>W</kind></document-id></patcit><crossref idref="pcit0004">[0005]</crossref><crossref idref="pcit0005">[0008]</crossref><crossref idref="pcit0006">[0019]</crossref><crossref idref="pcit0007">[0020]</crossref><crossref idref="pcit0022">[0113]</crossref></li>
<li><patcit id="ref-pcit0005" dnum="JPHEI11510507B"><document-id><country>JP</country><doc-number>HEI11510507</doc-number><kind>B</kind></document-id></patcit><crossref idref="pcit0008">[0040]</crossref></li>
<li><patcit id="ref-pcit0006" dnum="JP2000512161A"><document-id><country>JP</country><doc-number>2000512161</doc-number><kind>A</kind></document-id></patcit><crossref idref="pcit0009">[0040]</crossref></li>
<li><patcit id="ref-pcit0007" dnum="US5580859A"><document-id><country>US</country><doc-number>5580859</doc-number><kind>A</kind></document-id></patcit><crossref idref="pcit0010">[0043]</crossref></li>
<li><patcit id="ref-pcit0008" dnum="US5589466A"><document-id><country>US</country><doc-number>5589466</doc-number><kind>A</kind></document-id></patcit><crossref idref="pcit0011">[0043]</crossref></li>
<li><patcit id="ref-pcit0009" dnum="US5804566A"><document-id><country>US</country><doc-number>5804566</doc-number><kind>A</kind></document-id></patcit><crossref idref="pcit0012">[0043]</crossref></li>
<li><patcit id="ref-pcit0010" dnum="US5739118A"><document-id><country>US</country><doc-number>5739118</doc-number><kind>A</kind></document-id></patcit><crossref idref="pcit0013">[0043]</crossref></li>
<li><patcit id="ref-pcit0011" dnum="US5736524A"><document-id><country>US</country><doc-number>5736524</doc-number><kind>A</kind></document-id></patcit><crossref idref="pcit0014">[0043]</crossref></li>
<li><patcit id="ref-pcit0012" dnum="US5679647A"><document-id><country>US</country><doc-number>5679647</doc-number><kind>A</kind></document-id></patcit><crossref idref="pcit0015">[0043]</crossref></li>
<li><patcit id="ref-pcit0013" dnum="WO9804720A"><document-id><country>WO</country><doc-number>9804720</doc-number><kind>A</kind></document-id></patcit><crossref idref="pcit0016">[0043]</crossref></li>
<li><patcit id="ref-pcit0014" dnum="US5922687A"><document-id><country>US</country><doc-number>5922687</doc-number><kind>A</kind></document-id></patcit><crossref idref="pcit0017">[0043]</crossref></li>
<li><patcit id="ref-pcit0015" dnum="US4722848A"><document-id><country>US</country><doc-number>4722848</doc-number><kind>A</kind></document-id></patcit><crossref idref="pcit0018">[0044]</crossref></li>
<li><patcit id="ref-pcit0016" dnum="JP2000509281A"><document-id><country>JP</country><doc-number>2000509281</doc-number><kind>A</kind></document-id></patcit><crossref idref="pcit0019">[0047]</crossref></li>
<li><patcit id="ref-pcit0017" dnum="WO2007032255A"><document-id><country>WO</country><doc-number>2007032255</doc-number><kind>A</kind></document-id></patcit><crossref idref="pcit0020">[0053]</crossref></li>
<li><patcit id="ref-pcit0018" dnum="WO2006031221A"><document-id><country>WO</country><doc-number>2006031221</doc-number><kind>A</kind></document-id></patcit><crossref idref="pcit0021">[0055]</crossref></li>
<li><patcit id="ref-pcit0019" dnum="US60852575A"><document-id><country>US</country><doc-number>60852575</doc-number><kind>A</kind><date>20061017</date></document-id></patcit><crossref idref="pcit0023">[0134]</crossref></li>
</ul></p>
<heading id="ref-h0003"><b>Non-patent literature cited in the description</b></heading>
<p id="ref-p0003" num="">
<ul id="ref-ul0002" list-style="bullet">
<li><nplcit id="ref-ncit0001" npl-type="s"><article><author><name>BOON T.</name></author><atl/><serial><sertitle>Int J Cancer</sertitle><pubdate><sdate>19930000</sdate><edate/></pubdate><vid>54</vid></serial><location><pp><ppf>177</ppf><ppl>80</ppl></pp></location></article></nplcit><crossref idref="ncit0001">[0002]</crossref></li>
<li><nplcit id="ref-ncit0002" npl-type="s"><article><author><name>BOON T. et al.</name></author><atl/><serial><sertitle>J Exp Med</sertitle><pubdate><sdate>19960000</sdate><edate/></pubdate><vid>183</vid></serial><location><pp><ppf>725</ppf><ppl>9</ppl></pp></location></article></nplcit><crossref idref="ncit0002">[0002]</crossref><crossref idref="ncit0081">[0111]</crossref></li>
<li><nplcit id="ref-ncit0003" npl-type="s"><article><author><name>VAN DER BRUGGEN P et al.</name></author><atl/><serial><sertitle>Science</sertitle><pubdate><sdate>19910000</sdate><edate/></pubdate><vid>254</vid></serial><location><pp><ppf>1643</ppf><ppl>7</ppl></pp></location></article></nplcit><crossref idref="ncit0003">[0002]</crossref><crossref idref="ncit0006">[0002]</crossref><crossref idref="ncit0040">[0018]</crossref><crossref idref="ncit0082">[0111]</crossref></li>
<li><nplcit id="ref-ncit0004" npl-type="s"><article><author><name>BRICHARD V et al.</name></author><atl/><serial><sertitle>J Exp Med</sertitle><vid>178</vid></serial><location><pp><ppf>489</ppf><ppl>95</ppl></pp></location></article></nplcit><crossref idref="ncit0004">[0002]</crossref></li>
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