Mutant KRAS-activated circATXN7 fosters tumor immunoescape by sensitizing tumor-specific T cells to activation-induced cell death

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作者
Chi Zhou
Wenxin Li
Zhenxing Liang
Xianrui Wu
Sijing Cheng
Jianhong Peng
Kaixuan Zeng
Weihao Li
Ping Lan
Xin Yang
Li Xiong
Ziwei Zeng
Xiaobin Zheng
Liang Huang
Wenhua Fan
Zhanzhen Liu
Yue Xing
Liang Kang
Huashan Liu
机构
[1] Sun Yat-sen University Cancer Center,Department of Colorectal Surgery
[2] Sun Yat-sen University Cancer Center,State Key Laboratory of Oncology in South China, Collaborative Innovation Center for Cancer Medicine
[3] Sun Yat-sen University Cancer Center,State Key Laboratory of Oncology in South China, Guangdong Provincial Clinical Research Center for Cancer
[4] Sun Yat-sen University,Department of General Surgery (Colorectal Surgery), The Sixth Affiliated Hospital
[5] Sun Yat-sen University,Guangdong Provincial Key Laboratory of Colorectal and Pelvic Floor Diseases, The Sixth Affiliated Hospital
[6] Sun Yat-sen University,Biomedical Innovation Center, The Sixth Affiliated Hospital
[7] the Second Affiliated Hospital of Xi’ an Jiaotong University,Precision Medical Research Institute
[8] Sun Yat-Sen University,Guangdong Provincial Key Laboratory of Malignant Tumor Epigenetics and Gene Regulation, Medical Research Center, Sun Yat
[9] Sun Yat-Sen University,Sen Memorial Hospital
[10] the Seventh Affiliated Hospital of Sun Yat-sen University,Breast Tumor Center, Sun Yat
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摘要
Mutant KRAS (KRASMUT) is often exploited by cancers to shape tumor immunity, but the underlying mechanisms are not fully understood. Here we report that tumor-specific cytotoxic T lymphocytes (CTLs) from KRASMUT cancers are sensitive to activation-induced cell death (AICD). circATXN7, an NF-κB-interacting circular RNA, governs T cell sensitivity to AICD by inactivating NF-κB. Mechanistically, histone lactylation derived from KRASMUT tumor cell-produced lactic acid directly activates transcription of circATXN7, which binds to NF-κB p65 subunit and masks the p65 nuclear localization signal motif, thereby sequestering it in the cytoplasm. Clinically, circATXN7 upregulation in tumor-specific CTLs correlates with adverse clinical outcomes and immunotherapeutic resistance. Genetic ablation of circAtxn7 in CD8+ T cells leads to mutant-selective tumor inhibition, while also increases anti-PD1 efficacy in multiple tumor models in female mice. Furthermore, targeting circATXN7 in adoptively transferred tumor-reactive CTLs improves their antitumor activities. These findings provide insight into how lymphocyte-expressed circRNAs contribute to T-cell fate decisions and anticancer immunotherapies.
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