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Internal checkpoint regulates T cell neoantigen reactivity and susceptibility to PD1 blockade

Authors :
Douglas C, Palmer
Beau R, Webber
Yogin, Patel
Matthew J, Johnson
Christine M, Kariya
Walker S, Lahr
Maria R, Parkhurst
Jared J, Gartner
Todd D, Prickett
Frank J, Lowery
Rigel J, Kishton
Devikala, Gurusamy
Zulmarie, Franco
Suman K, Vodnala
Miechaleen D, Diers
Natalie K, Wolf
Nicholas J, Slipek
David H, McKenna
Darin, Sumstad
Lydia, Viney
Tom, Henley
Tilmann, Bürckstümmer
Oliver, Baker
Ying, Hu
Chunhua, Yan
Daoud, Meerzaman
Kartik, Padhan
Winnie, Lo
Parisa, Malekzadeh
Li, Jia
Drew C, Deniger
Shashank J, Patel
Paul F, Robbins
R Scott, McIvor
Modassir, Choudhry
Steven A, Rosenberg
Branden S, Moriarity
Nicholas P, Restifo
Source :
Med. 3:682-704.e8
Publication Year :
2022
Publisher :
Elsevier BV, 2022.

Abstract

Adoptive transfer of tumor-infiltrating lymphocytes (TIL) fails to consistently elicit tumor rejection. Manipulation of intrinsic factors that inhibit T cell effector function and neoantigen recognition may therefore improve TIL therapy outcomes. We previously identified the cytokine-induced SH2 protein (CISH) as a key regulator of T cell functional avidity in mice. Here, we investigate the mechanistic role of CISH in regulating human T cell effector function in solid tumors and demonstrate that CRISPR/Cas9 disruption of CISH enhances TIL neoantigen recognition and response to checkpoint blockade.Single-cell gene expression profiling was used to identify a negative correlation between high CISH expression and TIL activation in patient-derived TIL. A GMP-compliant CRISPR/Cas9 gene editing process was developed to assess the impact of CISH disruption on the molecular and functional phenotype of human peripheral blood T cells and TIL. Tumor-specific T cells with disrupted Cish function were adoptively transferred into tumor-bearing mice and evaluated for efficacy with or without checkpoint blockade.CISH expression was associated with T cell dysfunction. CISH deletion using CRISPR/Cas9 resulted in hyper-activation and improved functional avidity against tumor-derived neoantigens without perturbing T cell maturation. Cish knockout resulted in increased susceptibility to checkpoint blockade in vivo.CISH negatively regulates human T cell effector function, and its genetic disruption offers a novel avenue to improve the therapeutic efficacy of adoptive TIL therapy.This study was funded by Intima Bioscience, U.S. and in part through the Intramural program CCR at the National Cancer Institute.

Details

ISSN :
26666340
Volume :
3
Database :
OpenAIRE
Journal :
Med
Accession number :
edsair.doi.dedup.....2493e0ebec169c9a2ac88f6a46b00bbc
Full Text :
https://doi.org/10.1016/j.medj.2022.07.008