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Deletion of SNX9 alleviates CD8 T cell exhaustion for effective cellular cancer immunotherapy.

Marcel P Trefny ,
Nicole Kirchhammer ,
Priska Auf der Maur ,
Marina Natoli ,
Dominic Schmid ,
Markus Germann ,
Laura Fernandez Rodriguez ,
Petra Herzig ,
Jonas Lötscher ,
Maryam Akrami ,
Jane C Stinchcombe ,
Michal A Stanczak ,
Andreas Zingg ,
Melanie Buchi ,
Julien Roux ,
Romina Marone ,
Leyla Don ,
Didier Lardinois ,
Mark Wiese ,
Lukas T Jeker ,
Mohamed Bentires-Alj ,
Jérémie Rossy ,
Daniela S Thommen ,
Gillian M Griffiths ,
Heinz Läubli ,
Christoph Hess ,
Alfred Zippelius

Abstract

Tumor-specific T cells are frequently exhausted by chronic antigenic stimulation. We here report on a human antigen-specific ex vivo model to explore new therapeutic options for T cell immunotherapies. T cells generated with this model resemble tumor-infiltrating exhausted T cells on a phenotypic and transcriptional level. Using a targeted pooled CRISPR-Cas9 screen and individual gene knockout validation experiments, we uncover sorting nexin-9 (SNX9) as a mediator of T cell exhaustion. Upon TCR/CD28 stimulation, deletion of SNX9 in CD8 T cells decreases PLCγ1, Ca2+, and NFATc2-mediated T cell signaling and reduces expression of NR4A1/3 and TOX. SNX9 knockout enhances memory differentiation and IFNγ secretion of adoptively transferred T cells and results in improved anti-tumor efficacy of human chimeric antigen receptor T cells in vivo. Our findings highlight that targeting SNX9 is a strategy to prevent T cell exhaustion and enhance anti-tumor immunity.

More about this publication

Nature communications

Volume 14
Issue nr. 1
Pages 86
Publication date 02-02-2023

Full text links

Publisher website (DOI) 10.1038/s41467-022-35583-w
Europe PubMed Central 36732507
Pubmed 36732507

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