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A pipeline for identification and validation of tumor-specific antigens in a mouse model of metastatic breast cancer

Cancer immunotherapy continues to make headway as a treatment for advanced stage tumors, revealing an urgent need to understand the fundamentals of anti-tumor immune responses. Noteworthy is a scarcity of data pertaining to the breadth and specificity of tumor-specific T cell responses in metastatic...

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Autores principales: DeVette, Christa I., Gundlapalli, Harika, Lai, Shu-Chin Alicia, McMurtrey, Curtis P., Hoover, Ashley R., Gurung, Hem R., Chen, Wei R., Welm, Alana L., Hildebrand, William H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Taylor & Francis 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6959440/
https://www.ncbi.nlm.nih.gov/pubmed/32002300
http://dx.doi.org/10.1080/2162402X.2019.1685300
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author DeVette, Christa I.
Gundlapalli, Harika
Lai, Shu-Chin Alicia
McMurtrey, Curtis P.
Hoover, Ashley R.
Gurung, Hem R.
Chen, Wei R.
Welm, Alana L.
Hildebrand, William H.
author_facet DeVette, Christa I.
Gundlapalli, Harika
Lai, Shu-Chin Alicia
McMurtrey, Curtis P.
Hoover, Ashley R.
Gurung, Hem R.
Chen, Wei R.
Welm, Alana L.
Hildebrand, William H.
author_sort DeVette, Christa I.
collection PubMed
description Cancer immunotherapy continues to make headway as a treatment for advanced stage tumors, revealing an urgent need to understand the fundamentals of anti-tumor immune responses. Noteworthy is a scarcity of data pertaining to the breadth and specificity of tumor-specific T cell responses in metastatic breast cancer. Autochthonous transgenic models of breast cancer display spontaneous metastasis in the FVB/NJ mouse strain, yet a lack of knowledge regarding tumor-bound MHC/peptide immune epitopes in this mouse model limits the characterization of tumor-specific T cell responses, and the mechanisms that regulate T cell responses in the metastatic setting. We recently generated the NetH2pan prediction tool for murine class I MHC ligands by building an FVB/NJ H-2q ligand database and combining it with public information from six other murine MHC alleles. Here, we deployed NetH2pan in combination with an advanced proteomics workflow to identify immunogenic T cell epitopes in the MMTV-PyMT transgenic model for metastatic breast cancer. Five unique MHC I/PyMT epitopes were identified. These tumor-specific epitopes were confirmed to be presented by the class I MHC of primary MMTV-PyMT tumors and their T cell immunogenicity was validated. Vaccination using a DNA construct encoding a truncated PyMT protein generated CD8 + T cell responses to these MHC class I/peptide complexes and prevented tumor development. In sum, we have established an MHC-ligand discovery pipeline in FVB/NJ mice, identified and tracked H-2D(q)/PyMT neoantigen-specific T cells, and developed a vaccine that prevents tumor development in this metastatic model of breast cancer.
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spelling pubmed-69594402020-01-30 A pipeline for identification and validation of tumor-specific antigens in a mouse model of metastatic breast cancer DeVette, Christa I. Gundlapalli, Harika Lai, Shu-Chin Alicia McMurtrey, Curtis P. Hoover, Ashley R. Gurung, Hem R. Chen, Wei R. Welm, Alana L. Hildebrand, William H. Oncoimmunology Original Research Cancer immunotherapy continues to make headway as a treatment for advanced stage tumors, revealing an urgent need to understand the fundamentals of anti-tumor immune responses. Noteworthy is a scarcity of data pertaining to the breadth and specificity of tumor-specific T cell responses in metastatic breast cancer. Autochthonous transgenic models of breast cancer display spontaneous metastasis in the FVB/NJ mouse strain, yet a lack of knowledge regarding tumor-bound MHC/peptide immune epitopes in this mouse model limits the characterization of tumor-specific T cell responses, and the mechanisms that regulate T cell responses in the metastatic setting. We recently generated the NetH2pan prediction tool for murine class I MHC ligands by building an FVB/NJ H-2q ligand database and combining it with public information from six other murine MHC alleles. Here, we deployed NetH2pan in combination with an advanced proteomics workflow to identify immunogenic T cell epitopes in the MMTV-PyMT transgenic model for metastatic breast cancer. Five unique MHC I/PyMT epitopes were identified. These tumor-specific epitopes were confirmed to be presented by the class I MHC of primary MMTV-PyMT tumors and their T cell immunogenicity was validated. Vaccination using a DNA construct encoding a truncated PyMT protein generated CD8 + T cell responses to these MHC class I/peptide complexes and prevented tumor development. In sum, we have established an MHC-ligand discovery pipeline in FVB/NJ mice, identified and tracked H-2D(q)/PyMT neoantigen-specific T cells, and developed a vaccine that prevents tumor development in this metastatic model of breast cancer. Taylor & Francis 2019-11-29 /pmc/articles/PMC6959440/ /pubmed/32002300 http://dx.doi.org/10.1080/2162402X.2019.1685300 Text en © 2019 The Author(s). Published with license by Taylor & Francis Group, LLC. https://creativecommons.org/licenses/by-nc/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial License (http://creativecommons.org/licenses/by-nc/4.0/ (https://creativecommons.org/licenses/by-nc/4.0/) ), which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Research
DeVette, Christa I.
Gundlapalli, Harika
Lai, Shu-Chin Alicia
McMurtrey, Curtis P.
Hoover, Ashley R.
Gurung, Hem R.
Chen, Wei R.
Welm, Alana L.
Hildebrand, William H.
A pipeline for identification and validation of tumor-specific antigens in a mouse model of metastatic breast cancer
title A pipeline for identification and validation of tumor-specific antigens in a mouse model of metastatic breast cancer
title_full A pipeline for identification and validation of tumor-specific antigens in a mouse model of metastatic breast cancer
title_fullStr A pipeline for identification and validation of tumor-specific antigens in a mouse model of metastatic breast cancer
title_full_unstemmed A pipeline for identification and validation of tumor-specific antigens in a mouse model of metastatic breast cancer
title_short A pipeline for identification and validation of tumor-specific antigens in a mouse model of metastatic breast cancer
title_sort pipeline for identification and validation of tumor-specific antigens in a mouse model of metastatic breast cancer
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6959440/
https://www.ncbi.nlm.nih.gov/pubmed/32002300
http://dx.doi.org/10.1080/2162402X.2019.1685300
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