In vivo genome-wide CRISPR screens identify FOXR1 as a suppressor of CD8 + T cell antitumor immunity

T cell dysfunction critically limits the efficacy of T cell–based immunotherapies in solid tumors, yet the intrinsic regulators of T cell dysfunction remain incompletely understood. Through an in vivo genome-wide CRISPR screen in tumor-infiltrating CD8 + T cells, we identified Forkhead Box R1 (FOXR1) as a potent transcriptional suppressor of CD8 + T cell effector functions. Genetic ablation of FOXR1 significantly enhanced cytokine production and cytotoxic capacity in both murine and human CD8 + T cells, whereas its overexpression impaired T cell activation and effector molecule expression. Mechanistically, multiomics integration of RNA-seq, CUT&Tag-seq, and ATAC-seq revealed that FOXR1 binds directly to promoter regions of key effector genes, including IL2, GZMB, and PRF1 , and represses their expression. Importantly, FOXR1 deletion in human anti-CD19 CAR T cells improved their efficacy against solid tumors, demonstrating that FOXR1 is a checkpoint of T cell effector function and targeting FOXR1 is a promising strategy to enhance CAR T cell efficacy against solid tumors.

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Publication Details

Journal
Proceedings of the National Academy of Sciences
Published
2026-09-08
DOI
https://doi.org/10.1073/pnas.2534362123
Primary Topic
CAR-T cell therapy research
Type
article
Field-Weighted Citation Impact
0.00

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article

In vivo genome-wide CRISPR screens identify FOXR1 as a suppressor of CD8 + T cell antitumor immunity

Guideng Li, Jianzhou Cui, Xuetao Cao, Xue Yang et al.
Proceedings of the National Academy of Sciences
CAR-T cell therapy research
article

In vivo genome-wide CRISPR screens identify FOXR1 as a suppressor of CD8 + T cell antitumor immunity

Guideng Li, Jianzhou Cui, Xuetao Cao, Xue Yang, Bo Huang, Chunmei Wang, Henan Xu, Han Ouyang, Bin Zhang, Lingxiao Peng
article en

Abstract

T cell dysfunction critically limits the efficacy of T cell–based immunotherapies in solid tumors, yet the intrinsic regulators of T cell dysfunction remain incompletely understood. Through an in vivo genome-wide CRISPR screen in tumor-infiltrating CD8 + T cells, we identified Forkhead Box R1 (FOXR1) as a potent transcriptional suppressor of CD8 + T cell effector functions. Genetic ablation of FOXR1 significantly enhanced cytokine production and cytotoxic capacity in both murine and human CD8 + T cells, whereas its overexpression impaired T cell activation and effector molecule expression. Mechanistically, multiomics integration of RNA-seq, CUT&Tag-seq, and ATAC-seq revealed that FOXR1 binds directly to promoter regions of key effector genes, including IL2, GZMB, and PRF1 , and represses their expression. Importantly, FOXR1 deletion in human anti-CD19 CAR T cells improved their efficacy against solid tumors, demonstrating that FOXR1 is a checkpoint of T cell effector function and targeting FOXR1 is a promising strategy to enhance CAR T cell efficacy against solid tumors.

Proceedings of the National Academy of SciencesVol. 123(37)
Chinese Academy of Medical Sciences & Peking Union Medical College (CN), Nankai University (CN), Suzhou Institute of Systems Medicine (CN)
National Natural Science Foundation of China
Openalex Percentile: Top 14%
CAR-T cell therapy research
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