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ATM Regulates Differentiation of Myofibroblastic Cancer-Associated Fibroblasts and Can Be Targeted to Overcome Immunotherapy Resistance
Myofibroblastic cancer-associated fibroblast (myoCAF)–rich tumors generally contain few T cells and respond poorly to immune-checkpoint blockade. Although myoCAFs are associated with poor outcome in most solid tumors, the molecular mechanisms regulating myoCAF accumulation remain unclear, limiting t...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
American Association for Cancer Research
2022
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9755965/ https://www.ncbi.nlm.nih.gov/pubmed/36353752 http://dx.doi.org/10.1158/0008-5472.CAN-22-0435 |
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author | Mellone, Massimiliano Piotrowska, Klaudia Venturi, Giulia James, Lija Bzura, Aleksandra Lopez, Maria A. James, Sonya Wang, Chuan Ellis, Matthew J. Hanley, Christopher J. Buckingham, Josephine F. Cox, Kerry L. Hughes, Gareth Valge-Archer, Viia King, Emma V. Beers, Stephen A. Jaquet, Vincent Jones, George D.D. Savelyeva, Natalia Sayan, Emre Parsons, Jason L. Durant, Stephen Thomas, Gareth J. |
author_facet | Mellone, Massimiliano Piotrowska, Klaudia Venturi, Giulia James, Lija Bzura, Aleksandra Lopez, Maria A. James, Sonya Wang, Chuan Ellis, Matthew J. Hanley, Christopher J. Buckingham, Josephine F. Cox, Kerry L. Hughes, Gareth Valge-Archer, Viia King, Emma V. Beers, Stephen A. Jaquet, Vincent Jones, George D.D. Savelyeva, Natalia Sayan, Emre Parsons, Jason L. Durant, Stephen Thomas, Gareth J. |
author_sort | Mellone, Massimiliano |
collection | PubMed |
description | Myofibroblastic cancer-associated fibroblast (myoCAF)–rich tumors generally contain few T cells and respond poorly to immune-checkpoint blockade. Although myoCAFs are associated with poor outcome in most solid tumors, the molecular mechanisms regulating myoCAF accumulation remain unclear, limiting the potential for therapeutic intervention. Here, we identify ataxia-telangiectasia mutated (ATM) as a central regulator of the myoCAF phenotype. Differentiating myofibroblasts in vitro and myoCAFs cultured ex vivo display activated ATM signaling, and targeting ATM genetically or pharmacologically could suppress and reverse differentiation. ATM activation was regulated by the reactive oxygen species–producing enzyme NOX4, both through DNA damage and increased oxidative stress. Targeting fibroblast ATM in vivo suppressed myoCAF-rich tumor growth, promoted intratumoral CD8 T-cell infiltration, and potentiated the response to anti–PD-1 blockade and antitumor vaccination. This work identifies a novel pathway regulating myoCAF differentiation and provides a rationale for using ATM inhibitors to overcome CAF-mediated immunotherapy resistance. SIGNIFICANCE: ATM signaling supports the differentiation of myoCAFs to suppress T-cell infiltration and antitumor immunity, supporting the potential clinical use of ATM inhibitors in combination with checkpoint inhibition in myoCAF-rich, immune-cold tumors. |
format | Online Article Text |
id | pubmed-9755965 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2022 |
publisher | American Association for Cancer Research |
record_format | MEDLINE/PubMed |
spelling | pubmed-97559652023-01-05 ATM Regulates Differentiation of Myofibroblastic Cancer-Associated Fibroblasts and Can Be Targeted to Overcome Immunotherapy Resistance Mellone, Massimiliano Piotrowska, Klaudia Venturi, Giulia James, Lija Bzura, Aleksandra Lopez, Maria A. James, Sonya Wang, Chuan Ellis, Matthew J. Hanley, Christopher J. Buckingham, Josephine F. Cox, Kerry L. Hughes, Gareth Valge-Archer, Viia King, Emma V. Beers, Stephen A. Jaquet, Vincent Jones, George D.D. Savelyeva, Natalia Sayan, Emre Parsons, Jason L. Durant, Stephen Thomas, Gareth J. Cancer Res Tumor Biology and Immunology Myofibroblastic cancer-associated fibroblast (myoCAF)–rich tumors generally contain few T cells and respond poorly to immune-checkpoint blockade. Although myoCAFs are associated with poor outcome in most solid tumors, the molecular mechanisms regulating myoCAF accumulation remain unclear, limiting the potential for therapeutic intervention. Here, we identify ataxia-telangiectasia mutated (ATM) as a central regulator of the myoCAF phenotype. Differentiating myofibroblasts in vitro and myoCAFs cultured ex vivo display activated ATM signaling, and targeting ATM genetically or pharmacologically could suppress and reverse differentiation. ATM activation was regulated by the reactive oxygen species–producing enzyme NOX4, both through DNA damage and increased oxidative stress. Targeting fibroblast ATM in vivo suppressed myoCAF-rich tumor growth, promoted intratumoral CD8 T-cell infiltration, and potentiated the response to anti–PD-1 blockade and antitumor vaccination. This work identifies a novel pathway regulating myoCAF differentiation and provides a rationale for using ATM inhibitors to overcome CAF-mediated immunotherapy resistance. SIGNIFICANCE: ATM signaling supports the differentiation of myoCAFs to suppress T-cell infiltration and antitumor immunity, supporting the potential clinical use of ATM inhibitors in combination with checkpoint inhibition in myoCAF-rich, immune-cold tumors. American Association for Cancer Research 2022-12-16 2022-11-10 /pmc/articles/PMC9755965/ /pubmed/36353752 http://dx.doi.org/10.1158/0008-5472.CAN-22-0435 Text en ©2022 The Authors; Published by the American Association for Cancer Research https://creativecommons.org/licenses/by/4.0/This open access article is distributed under the Creative Commons Attribution 4.0 International (CC BY 4.0) license. |
spellingShingle | Tumor Biology and Immunology Mellone, Massimiliano Piotrowska, Klaudia Venturi, Giulia James, Lija Bzura, Aleksandra Lopez, Maria A. James, Sonya Wang, Chuan Ellis, Matthew J. Hanley, Christopher J. Buckingham, Josephine F. Cox, Kerry L. Hughes, Gareth Valge-Archer, Viia King, Emma V. Beers, Stephen A. Jaquet, Vincent Jones, George D.D. Savelyeva, Natalia Sayan, Emre Parsons, Jason L. Durant, Stephen Thomas, Gareth J. ATM Regulates Differentiation of Myofibroblastic Cancer-Associated Fibroblasts and Can Be Targeted to Overcome Immunotherapy Resistance |
title | ATM Regulates Differentiation of Myofibroblastic Cancer-Associated Fibroblasts and Can Be Targeted to Overcome Immunotherapy Resistance |
title_full | ATM Regulates Differentiation of Myofibroblastic Cancer-Associated Fibroblasts and Can Be Targeted to Overcome Immunotherapy Resistance |
title_fullStr | ATM Regulates Differentiation of Myofibroblastic Cancer-Associated Fibroblasts and Can Be Targeted to Overcome Immunotherapy Resistance |
title_full_unstemmed | ATM Regulates Differentiation of Myofibroblastic Cancer-Associated Fibroblasts and Can Be Targeted to Overcome Immunotherapy Resistance |
title_short | ATM Regulates Differentiation of Myofibroblastic Cancer-Associated Fibroblasts and Can Be Targeted to Overcome Immunotherapy Resistance |
title_sort | atm regulates differentiation of myofibroblastic cancer-associated fibroblasts and can be targeted to overcome immunotherapy resistance |
topic | Tumor Biology and Immunology |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9755965/ https://www.ncbi.nlm.nih.gov/pubmed/36353752 http://dx.doi.org/10.1158/0008-5472.CAN-22-0435 |
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