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IL-7R licenses a population of epigenetically poised memory CD8(+) T cells with superior antitumor efficacy that are critical for melanoma memory

Recurrence of advanced melanoma after therapy is a major risk factor for reduced survival, and treatment options are limited. Antitumor immune memory plays a critical role in preventing melanoma recurrence and memory T cells could be a potent cell-based therapy, but the identity, and functional prop...

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Autores principales: Micevic, Goran, Daniels, Andrew, Flem-Karlsen, Karine, Park, Koonam, Talty, Ronan, McGeary, Meaghan, Mirza, Haris, Blackburn, Holly N., Sefik, Esen, Cheung, Julie F., Hornick, Noah I., Aizenbud, Lilach, Joshi, Nikhil S., Kluger, Harriet, Iwasaki, Akiko, Bosenberg, Marcus W., Flavell, Richard A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10372654/
https://www.ncbi.nlm.nih.gov/pubmed/37459511
http://dx.doi.org/10.1073/pnas.2304319120
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author Micevic, Goran
Daniels, Andrew
Flem-Karlsen, Karine
Park, Koonam
Talty, Ronan
McGeary, Meaghan
Mirza, Haris
Blackburn, Holly N.
Sefik, Esen
Cheung, Julie F.
Hornick, Noah I.
Aizenbud, Lilach
Joshi, Nikhil S.
Kluger, Harriet
Iwasaki, Akiko
Bosenberg, Marcus W.
Flavell, Richard A.
author_facet Micevic, Goran
Daniels, Andrew
Flem-Karlsen, Karine
Park, Koonam
Talty, Ronan
McGeary, Meaghan
Mirza, Haris
Blackburn, Holly N.
Sefik, Esen
Cheung, Julie F.
Hornick, Noah I.
Aizenbud, Lilach
Joshi, Nikhil S.
Kluger, Harriet
Iwasaki, Akiko
Bosenberg, Marcus W.
Flavell, Richard A.
author_sort Micevic, Goran
collection PubMed
description Recurrence of advanced melanoma after therapy is a major risk factor for reduced survival, and treatment options are limited. Antitumor immune memory plays a critical role in preventing melanoma recurrence and memory T cells could be a potent cell-based therapy, but the identity, and functional properties of the required immune cells are incompletely understood. Here, we show that an IL-7R(hi) tumor-specific CD8(+) population is critical for antitumor memory and can be epigenetically augmented to drive powerful antitumor immune responses. Using a model of functional antimelanoma memory, we found that high IL-7R expression selectively marks a CD8(+) population in lymphoid organs that plays critical roles in maintaining tumor remission after immunotherapy or surgical resection. This population has intrinsic cytotoxic activity, lacks markers of exhaustion and has superior antitumor efficacy. IL-7Rhi cells have a functionally poised epigenetic landscape regulated by DNA methylation, which can be augmented by hypomethylating agents to confer improved survival and complete melanoma clearance in naive mice. Importantly, greater than 95% of tumor-specific T cells in draining lymph nodes after therapy express high levels of IL-7R. This overlap between IL-7R(hi) and antigen-specific T cells allows for enrichment of a potent functional CD8(+) population without determining antigen-specificity, which we demonstrate in a melanoma model without a known antigen. We identify that IL-7R expression in human melanoma is an independent prognostic factor of improved survival. These findings advance our basic understanding of antitumor memory and suggest a cell-based therapy using high IL-7R expression to enrich for a lymph node population with superior antitumor activity that can be augmented by hypomethylating agents.
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spelling pubmed-103726542023-07-28 IL-7R licenses a population of epigenetically poised memory CD8(+) T cells with superior antitumor efficacy that are critical for melanoma memory Micevic, Goran Daniels, Andrew Flem-Karlsen, Karine Park, Koonam Talty, Ronan McGeary, Meaghan Mirza, Haris Blackburn, Holly N. Sefik, Esen Cheung, Julie F. Hornick, Noah I. Aizenbud, Lilach Joshi, Nikhil S. Kluger, Harriet Iwasaki, Akiko Bosenberg, Marcus W. Flavell, Richard A. Proc Natl Acad Sci U S A Biological Sciences Recurrence of advanced melanoma after therapy is a major risk factor for reduced survival, and treatment options are limited. Antitumor immune memory plays a critical role in preventing melanoma recurrence and memory T cells could be a potent cell-based therapy, but the identity, and functional properties of the required immune cells are incompletely understood. Here, we show that an IL-7R(hi) tumor-specific CD8(+) population is critical for antitumor memory and can be epigenetically augmented to drive powerful antitumor immune responses. Using a model of functional antimelanoma memory, we found that high IL-7R expression selectively marks a CD8(+) population in lymphoid organs that plays critical roles in maintaining tumor remission after immunotherapy or surgical resection. This population has intrinsic cytotoxic activity, lacks markers of exhaustion and has superior antitumor efficacy. IL-7Rhi cells have a functionally poised epigenetic landscape regulated by DNA methylation, which can be augmented by hypomethylating agents to confer improved survival and complete melanoma clearance in naive mice. Importantly, greater than 95% of tumor-specific T cells in draining lymph nodes after therapy express high levels of IL-7R. This overlap between IL-7R(hi) and antigen-specific T cells allows for enrichment of a potent functional CD8(+) population without determining antigen-specificity, which we demonstrate in a melanoma model without a known antigen. We identify that IL-7R expression in human melanoma is an independent prognostic factor of improved survival. These findings advance our basic understanding of antitumor memory and suggest a cell-based therapy using high IL-7R expression to enrich for a lymph node population with superior antitumor activity that can be augmented by hypomethylating agents. National Academy of Sciences 2023-07-17 2023-07-25 /pmc/articles/PMC10372654/ /pubmed/37459511 http://dx.doi.org/10.1073/pnas.2304319120 Text en Copyright © 2023 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by/4.0/This open access article is distributed under Creative Commons Attribution License 4.0 (CC BY) (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Biological Sciences
Micevic, Goran
Daniels, Andrew
Flem-Karlsen, Karine
Park, Koonam
Talty, Ronan
McGeary, Meaghan
Mirza, Haris
Blackburn, Holly N.
Sefik, Esen
Cheung, Julie F.
Hornick, Noah I.
Aizenbud, Lilach
Joshi, Nikhil S.
Kluger, Harriet
Iwasaki, Akiko
Bosenberg, Marcus W.
Flavell, Richard A.
IL-7R licenses a population of epigenetically poised memory CD8(+) T cells with superior antitumor efficacy that are critical for melanoma memory
title IL-7R licenses a population of epigenetically poised memory CD8(+) T cells with superior antitumor efficacy that are critical for melanoma memory
title_full IL-7R licenses a population of epigenetically poised memory CD8(+) T cells with superior antitumor efficacy that are critical for melanoma memory
title_fullStr IL-7R licenses a population of epigenetically poised memory CD8(+) T cells with superior antitumor efficacy that are critical for melanoma memory
title_full_unstemmed IL-7R licenses a population of epigenetically poised memory CD8(+) T cells with superior antitumor efficacy that are critical for melanoma memory
title_short IL-7R licenses a population of epigenetically poised memory CD8(+) T cells with superior antitumor efficacy that are critical for melanoma memory
title_sort il-7r licenses a population of epigenetically poised memory cd8(+) t cells with superior antitumor efficacy that are critical for melanoma memory
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10372654/
https://www.ncbi.nlm.nih.gov/pubmed/37459511
http://dx.doi.org/10.1073/pnas.2304319120
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