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Androgen conspires with the CD8 + T cell exhaustion program and contributes to sex bias in cancer

Authors :
Hyunwoo Kwon
Johanna M. Schafer
No-Joon Song
Satoshi Kaneko
Anqi Li
Tong Xiao
Anjun Ma
Carter Allen
Komal Das
Lei Zhou
Brian Riesenberg
Yuzhou Chang
Payton Weltge
Maria Velegraki
David Y. Oh
Lawrence Fong
Qin Ma
Debasish Sundi
Dongjun Chung
Xue Li
Zihai Li
Source :
Science Immunology. 7
Publication Year :
2022
Publisher :
American Association for the Advancement of Science (AAAS), 2022.

Abstract

Sex bias exists in the development and progression of nonreproductive organ cancers, but the underlying mechanisms are enigmatic. Studies so far have focused largely on sexual dimorphisms in cancer biology and socioeconomic factors. Here, we establish a role for CD8 + T cell–dependent antitumor immunity in mediating sex differences in tumor aggressiveness, which is driven by the gonadal androgen but not sex chromosomes. A male bias exists in the frequency of intratumoral antigen-experienced Tcf7 /TCF1 + progenitor exhausted CD8 + T cells that are devoid of effector activity as a consequence of intrinsic androgen receptor (AR) function. Mechanistically, we identify a novel sex-specific regulon in progenitor exhausted CD8 + T cells and a pertinent contribution from AR as a direct transcriptional transactivator of Tcf7 /TCF1. The T cell–intrinsic function of AR in promoting CD8 + T cell exhaustion in vivo was established using multiple approaches including loss-of-function studies with CD8-specific Ar knockout mice. Moreover, ablation of the androgen-AR axis rewires the tumor microenvironment to favor effector T cell differentiation and potentiates the efficacy of anti–PD-1 immune checkpoint blockade. Collectively, our findings highlight androgen-mediated promotion of CD8 + T cell dysfunction in cancer and imply broader opportunities for therapeutic development from understanding sex disparities in health and disease.

Subjects

Subjects :
Immunology
General Medicine

Details

ISSN :
24709468
Volume :
7
Database :
OpenAIRE
Journal :
Science Immunology
Accession number :
edsair.doi...........aa9ea2daacf26211c319762d882a68de