Activation of the transcription factor NFAT5 in the tumor microenvironment enforces CD8+ T cell exhaustion.

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Serval ID
serval:BIB_9B944FAF7B77
Type
Article: article from journal or magazin.
Collection
Publications
Institution
Title
Activation of the transcription factor NFAT5 in the tumor microenvironment enforces CD8+ T cell exhaustion.
Journal
Nature immunology
Author(s)
Tillé L., Cropp D., Charmoy M., Reichenbach P., Andreatta M., Wyss T., Bodley G., Crespo I., Nassiri S., Lourenco J., Leblond M.M., Lopez-Rodriguez C., Speiser D.E., Coukos G., Irving M., Carmona S.J., Held W., Verdeil G.
ISSN
1529-2916 (Electronic)
ISSN-L
1529-2908
Publication state
Published
Issued date
10/2023
Peer-reviewed
Oui
Volume
24
Number
10
Pages
1645-1653
Language
english
Notes
Publication types: Journal Article
Publication Status: ppublish
Abstract
Persistent exposure to antigen during chronic infection or cancer renders T cells dysfunctional. The molecular mechanisms regulating this state of exhaustion are thought to be common in infection and cancer, despite obvious differences in their microenvironments. Here we found that NFAT5, an NFAT family transcription factor that lacks an AP-1 docking site, was highly expressed in exhausted CD8 <sup>+</sup> T cells in the context of chronic infections and tumors but was selectively required in tumor-induced CD8 <sup>+</sup> T cell exhaustion. Overexpression of NFAT5 in CD8 <sup>+</sup> T cells reduced tumor control, while deletion of NFAT5 improved tumor control by promoting the accumulation of tumor-specific CD8 <sup>+</sup> T cells that had reduced expression of the exhaustion-associated proteins TOX and PD-1 and produced more cytokines, such as IFNɣ and TNF, than cells with wild-type levels of NFAT5, specifically in the precursor exhausted PD-1 <sup>+</sup> TCF1 <sup>+</sup> TIM-3 <sup>-</sup> CD8 <sup>+</sup> T cell population. NFAT5 did not promote T cell exhaustion during chronic infection with clone 13 of lymphocytic choriomeningitis virus. Expression of NFAT5 was induced by TCR triggering, but its transcriptional activity was specific to the tumor microenvironment and required hyperosmolarity. Thus, NFAT5 promoted the exhaustion of CD8 <sup>+</sup> T cells in a tumor-selective fashion.
Keywords
Immunology, Immunology and Allergy
Pubmed
Web of science
Create date
15/09/2023 13:09
Last modification date
09/12/2023 8:02
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