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Establishment of HLA-DR4 Transgenic Mice for the Identification of CD4(+) T Cell Epitopes of Tumor-Associated Antigens

Reports have shown that activation of tumor-specific CD4(+) helper T (Th) cells is crucial for effective anti-tumor immunity and identification of Th-cell epitopes is critical for peptide vaccine-based cancer immunotherapy. Although computer algorithms are available to predict peptides with high bin...

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Autores principales: Yatsuda, Junji, Irie, Atsushi, Harada, Kumiko, Michibata, Yayoi, Tsukamoto, Hirotake, Senju, Satoru, Tomita, Yusuke, Yuno, Akira, Hirayama, Masatoshi, Abu Sayem, Mohammad, Takeda, Naoki, Shibuya, Isao, Sogo, Shinji, Fujiki, Fumihiro, Sugiyama, Haruo, Eto, Masatoshi, Nishimura, Yasuharu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3875545/
https://www.ncbi.nlm.nih.gov/pubmed/24386437
http://dx.doi.org/10.1371/journal.pone.0084908
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author Yatsuda, Junji
Irie, Atsushi
Harada, Kumiko
Michibata, Yayoi
Tsukamoto, Hirotake
Senju, Satoru
Tomita, Yusuke
Yuno, Akira
Hirayama, Masatoshi
Abu Sayem, Mohammad
Takeda, Naoki
Shibuya, Isao
Sogo, Shinji
Fujiki, Fumihiro
Sugiyama, Haruo
Eto, Masatoshi
Nishimura, Yasuharu
author_facet Yatsuda, Junji
Irie, Atsushi
Harada, Kumiko
Michibata, Yayoi
Tsukamoto, Hirotake
Senju, Satoru
Tomita, Yusuke
Yuno, Akira
Hirayama, Masatoshi
Abu Sayem, Mohammad
Takeda, Naoki
Shibuya, Isao
Sogo, Shinji
Fujiki, Fumihiro
Sugiyama, Haruo
Eto, Masatoshi
Nishimura, Yasuharu
author_sort Yatsuda, Junji
collection PubMed
description Reports have shown that activation of tumor-specific CD4(+) helper T (Th) cells is crucial for effective anti-tumor immunity and identification of Th-cell epitopes is critical for peptide vaccine-based cancer immunotherapy. Although computer algorithms are available to predict peptides with high binding affinity to a specific HLA class II molecule, the ability of those peptides to induce Th-cell responses must be evaluated. We have established HLA-DR4 (HLA-DRA*01:01/HLA-DRB1*04:05) transgenic mice (Tgm), since this HLA-DR allele is most frequent (13.6%) in Japanese population, to evaluate HLA-DR4-restricted Th-cell responses to tumor-associated antigen (TAA)-derived peptides predicted to bind to HLA-DR4. To avoid weak binding between mouse CD4 and HLA-DR4, Tgm were designed to express chimeric HLA-DR4/I-E(d), where I-E(d) α1 and β1 domains were replaced with those from HLA-DR4. Th cells isolated from Tgm immunized with adjuvant and HLA-DR4-binding cytomegalovirus-derived peptide proliferated when stimulated with peptide-pulsed HLA-DR4-transduced mouse L cells, indicating chimeric HLA-DR4/I-E(d) has equivalent antigen presenting capacity to HLA-DR4. Immunization with CDCA1(55-78) peptide, a computer algorithm-predicted HLA-DR4-binding peptide derived from TAA CDCA1, successfully induced Th-cell responses in Tgm, while immunization of HLA-DR4-binding Wilms' tumor 1 antigen-derived peptide with identical amino acid sequence to mouse ortholog failed. This was overcome by using peptide-pulsed syngeneic bone marrow-derived dendritic cells (BM-DC) followed by immunization with peptide/CFA booster. BM-DC-based immunization of KIF20A(494-517) peptide from another TAA KIF20A, with an almost identical HLA-binding core amino acid sequence to mouse ortholog, successfully induced Th-cell responses in Tgm. Notably, both CDCA1(55-78) and KIF20A(494-517) peptides induced human Th-cell responses in PBMCs from HLA-DR4-positive donors. Finally, an HLA-DR4 binding DEPDC1(191-213) peptide from a new TAA DEPDC1 overexpressed in bladder cancer induced strong Th-cell responses both in Tgm and in PBMCs from an HLA-DR4-positive donor. Thus, the HLA-DR4 Tgm combined with computer algorithm was useful for preliminary screening of candidate peptides for vaccination.
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spelling pubmed-38755452014-01-02 Establishment of HLA-DR4 Transgenic Mice for the Identification of CD4(+) T Cell Epitopes of Tumor-Associated Antigens Yatsuda, Junji Irie, Atsushi Harada, Kumiko Michibata, Yayoi Tsukamoto, Hirotake Senju, Satoru Tomita, Yusuke Yuno, Akira Hirayama, Masatoshi Abu Sayem, Mohammad Takeda, Naoki Shibuya, Isao Sogo, Shinji Fujiki, Fumihiro Sugiyama, Haruo Eto, Masatoshi Nishimura, Yasuharu PLoS One Research Article Reports have shown that activation of tumor-specific CD4(+) helper T (Th) cells is crucial for effective anti-tumor immunity and identification of Th-cell epitopes is critical for peptide vaccine-based cancer immunotherapy. Although computer algorithms are available to predict peptides with high binding affinity to a specific HLA class II molecule, the ability of those peptides to induce Th-cell responses must be evaluated. We have established HLA-DR4 (HLA-DRA*01:01/HLA-DRB1*04:05) transgenic mice (Tgm), since this HLA-DR allele is most frequent (13.6%) in Japanese population, to evaluate HLA-DR4-restricted Th-cell responses to tumor-associated antigen (TAA)-derived peptides predicted to bind to HLA-DR4. To avoid weak binding between mouse CD4 and HLA-DR4, Tgm were designed to express chimeric HLA-DR4/I-E(d), where I-E(d) α1 and β1 domains were replaced with those from HLA-DR4. Th cells isolated from Tgm immunized with adjuvant and HLA-DR4-binding cytomegalovirus-derived peptide proliferated when stimulated with peptide-pulsed HLA-DR4-transduced mouse L cells, indicating chimeric HLA-DR4/I-E(d) has equivalent antigen presenting capacity to HLA-DR4. Immunization with CDCA1(55-78) peptide, a computer algorithm-predicted HLA-DR4-binding peptide derived from TAA CDCA1, successfully induced Th-cell responses in Tgm, while immunization of HLA-DR4-binding Wilms' tumor 1 antigen-derived peptide with identical amino acid sequence to mouse ortholog failed. This was overcome by using peptide-pulsed syngeneic bone marrow-derived dendritic cells (BM-DC) followed by immunization with peptide/CFA booster. BM-DC-based immunization of KIF20A(494-517) peptide from another TAA KIF20A, with an almost identical HLA-binding core amino acid sequence to mouse ortholog, successfully induced Th-cell responses in Tgm. Notably, both CDCA1(55-78) and KIF20A(494-517) peptides induced human Th-cell responses in PBMCs from HLA-DR4-positive donors. Finally, an HLA-DR4 binding DEPDC1(191-213) peptide from a new TAA DEPDC1 overexpressed in bladder cancer induced strong Th-cell responses both in Tgm and in PBMCs from an HLA-DR4-positive donor. Thus, the HLA-DR4 Tgm combined with computer algorithm was useful for preliminary screening of candidate peptides for vaccination. Public Library of Science 2013-12-30 /pmc/articles/PMC3875545/ /pubmed/24386437 http://dx.doi.org/10.1371/journal.pone.0084908 Text en © 2013 Yatsuda et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Yatsuda, Junji
Irie, Atsushi
Harada, Kumiko
Michibata, Yayoi
Tsukamoto, Hirotake
Senju, Satoru
Tomita, Yusuke
Yuno, Akira
Hirayama, Masatoshi
Abu Sayem, Mohammad
Takeda, Naoki
Shibuya, Isao
Sogo, Shinji
Fujiki, Fumihiro
Sugiyama, Haruo
Eto, Masatoshi
Nishimura, Yasuharu
Establishment of HLA-DR4 Transgenic Mice for the Identification of CD4(+) T Cell Epitopes of Tumor-Associated Antigens
title Establishment of HLA-DR4 Transgenic Mice for the Identification of CD4(+) T Cell Epitopes of Tumor-Associated Antigens
title_full Establishment of HLA-DR4 Transgenic Mice for the Identification of CD4(+) T Cell Epitopes of Tumor-Associated Antigens
title_fullStr Establishment of HLA-DR4 Transgenic Mice for the Identification of CD4(+) T Cell Epitopes of Tumor-Associated Antigens
title_full_unstemmed Establishment of HLA-DR4 Transgenic Mice for the Identification of CD4(+) T Cell Epitopes of Tumor-Associated Antigens
title_short Establishment of HLA-DR4 Transgenic Mice for the Identification of CD4(+) T Cell Epitopes of Tumor-Associated Antigens
title_sort establishment of hla-dr4 transgenic mice for the identification of cd4(+) t cell epitopes of tumor-associated antigens
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3875545/
https://www.ncbi.nlm.nih.gov/pubmed/24386437
http://dx.doi.org/10.1371/journal.pone.0084908
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