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Epstein–Barr Virus+ B Cells in Breast Cancer Immune Response: A Case Report

EBV-specific T cells have been recently described to be involved in fatal encephalitis and myocarditis in cancer patients after immune checkpoint therapies. Here, we report the study of a human triple-negative breast cancer tumor (TNBC) and EBV-transformed B cells obtained from a patient-derived xen...

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Autores principales: Aran, Andrea, Peg, Vicente, Rabanal, Rosa Maria, Bernadó, Cristina, Zamora, Esther, Molina, Elisa, Arribas, Yago A., Arribas, Joaquín, Pérez, José, Roura-Mir, Carme, Carrascal, Montserrat, Cortés, Javier, Martí, Mercè
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8637110/
https://www.ncbi.nlm.nih.gov/pubmed/34868006
http://dx.doi.org/10.3389/fimmu.2021.761798
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author Aran, Andrea
Peg, Vicente
Rabanal, Rosa Maria
Bernadó, Cristina
Zamora, Esther
Molina, Elisa
Arribas, Yago A.
Arribas, Joaquín
Pérez, José
Roura-Mir, Carme
Carrascal, Montserrat
Cortés, Javier
Martí, Mercè
author_facet Aran, Andrea
Peg, Vicente
Rabanal, Rosa Maria
Bernadó, Cristina
Zamora, Esther
Molina, Elisa
Arribas, Yago A.
Arribas, Joaquín
Pérez, José
Roura-Mir, Carme
Carrascal, Montserrat
Cortés, Javier
Martí, Mercè
author_sort Aran, Andrea
collection PubMed
description EBV-specific T cells have been recently described to be involved in fatal encephalitis and myocarditis in cancer patients after immune checkpoint therapies. Here, we report the study of a human triple-negative breast cancer tumor (TNBC) and EBV-transformed B cells obtained from a patient-derived xenograft (PDX) that progressed into a lymphocytic neoplasm named xenograft-associated B-cell lymphoma (XABCL). T-cell receptor (TCR) high-throughput sequencing was performed to monitor the T-cell clonotypes present in the different samples. Forty-three T-cell clonotypes were found infiltrating the XABCL tissue after three passes in mice along 6 months. Eighteen of these (42%) were also found in the TNBC biopsy. TCR infiltrating the XABCL tissue showed a very restricted T-cell repertoire as compared with the biopsy-infiltrating T cells. Consequently, T cells derived from the TNBC biopsy were expanded in the presence of the B-cell line obtained from the XABCL (XABCL-LCL), after which the TCR repertoire obtained was again very restricted, i.e., only certain clonotypes were selected by the B cells. A number of these TCRs had previously been reported as sequences involved in infection, cancer, and/or autoimmunity. We then analyzed the immunopeptidome from the XABCL-LCL, to identify putative B-cell-associated peptides that might have been expanding these T cells. The HLA class I and class II-associated peptides from XABCL-LCL were then compared with published repertoires from LCL of different HLA typing. Proteins from the antigen processing and presentation pathway remained significantly enriched in the XABCL-LCL repertoire. Interestingly, some class II-presented peptides were derived from cancer-related proteins. These results suggest that bystander tumor-infiltrating EBV+ B cells acting as APC may be able to interact with tumor-infiltrating T cells and influence the TCR repertoire in the tumor site.
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spelling pubmed-86371102021-12-03 Epstein–Barr Virus+ B Cells in Breast Cancer Immune Response: A Case Report Aran, Andrea Peg, Vicente Rabanal, Rosa Maria Bernadó, Cristina Zamora, Esther Molina, Elisa Arribas, Yago A. Arribas, Joaquín Pérez, José Roura-Mir, Carme Carrascal, Montserrat Cortés, Javier Martí, Mercè Front Immunol Immunology EBV-specific T cells have been recently described to be involved in fatal encephalitis and myocarditis in cancer patients after immune checkpoint therapies. Here, we report the study of a human triple-negative breast cancer tumor (TNBC) and EBV-transformed B cells obtained from a patient-derived xenograft (PDX) that progressed into a lymphocytic neoplasm named xenograft-associated B-cell lymphoma (XABCL). T-cell receptor (TCR) high-throughput sequencing was performed to monitor the T-cell clonotypes present in the different samples. Forty-three T-cell clonotypes were found infiltrating the XABCL tissue after three passes in mice along 6 months. Eighteen of these (42%) were also found in the TNBC biopsy. TCR infiltrating the XABCL tissue showed a very restricted T-cell repertoire as compared with the biopsy-infiltrating T cells. Consequently, T cells derived from the TNBC biopsy were expanded in the presence of the B-cell line obtained from the XABCL (XABCL-LCL), after which the TCR repertoire obtained was again very restricted, i.e., only certain clonotypes were selected by the B cells. A number of these TCRs had previously been reported as sequences involved in infection, cancer, and/or autoimmunity. We then analyzed the immunopeptidome from the XABCL-LCL, to identify putative B-cell-associated peptides that might have been expanding these T cells. The HLA class I and class II-associated peptides from XABCL-LCL were then compared with published repertoires from LCL of different HLA typing. Proteins from the antigen processing and presentation pathway remained significantly enriched in the XABCL-LCL repertoire. Interestingly, some class II-presented peptides were derived from cancer-related proteins. These results suggest that bystander tumor-infiltrating EBV+ B cells acting as APC may be able to interact with tumor-infiltrating T cells and influence the TCR repertoire in the tumor site. Frontiers Media S.A. 2021-11-16 /pmc/articles/PMC8637110/ /pubmed/34868006 http://dx.doi.org/10.3389/fimmu.2021.761798 Text en Copyright © 2021 Aran, Peg, Rabanal, Bernadó, Zamora, Molina, Arribas, Arribas, Pérez, Roura-Mir, Carrascal, Cortés and Martí https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Immunology
Aran, Andrea
Peg, Vicente
Rabanal, Rosa Maria
Bernadó, Cristina
Zamora, Esther
Molina, Elisa
Arribas, Yago A.
Arribas, Joaquín
Pérez, José
Roura-Mir, Carme
Carrascal, Montserrat
Cortés, Javier
Martí, Mercè
Epstein–Barr Virus+ B Cells in Breast Cancer Immune Response: A Case Report
title Epstein–Barr Virus+ B Cells in Breast Cancer Immune Response: A Case Report
title_full Epstein–Barr Virus+ B Cells in Breast Cancer Immune Response: A Case Report
title_fullStr Epstein–Barr Virus+ B Cells in Breast Cancer Immune Response: A Case Report
title_full_unstemmed Epstein–Barr Virus+ B Cells in Breast Cancer Immune Response: A Case Report
title_short Epstein–Barr Virus+ B Cells in Breast Cancer Immune Response: A Case Report
title_sort epstein–barr virus+ b cells in breast cancer immune response: a case report
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8637110/
https://www.ncbi.nlm.nih.gov/pubmed/34868006
http://dx.doi.org/10.3389/fimmu.2021.761798
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