Methionine restriction promotes cGAS activation and chromatin untethering through demethylation to enhance antitumor immunity

Lan Fang(Tongji University), Yun Hao(Tongji University), Haihong Yu(Tongji University), Xuemei Gu(Tongji University), Qiao Peng(Tongji University), Huimin Zhuo(Tongji University), Yaxu Li(Tongji University), Zhiyuan Liu(Tongji University), Jia Wang(Tongji University), Yunfei Chen(Tongji University), Jiawen Zhang(Tongji University), Hongling Tian(Tongji University), Yaohui Gao(Tongji University), Renyuan Gao(Tongji University), Hongqi Teng(Tongji University), Zezhi Shan(Tongji University), Jiali Zhu(Tongji University), Zhiqiang Li(Tongji University), Yue Liu(Tongji University), Yiyi Zhang(Tongji University), Fei Yu(Tongji University), Zhang Lin(Shanghai Jiao Tong University), Yujun Hao(Tongji University), Xin Ge(Tongji University), Jian Yuan(Tongji University), Honggang Hu(Shanghai University), Yanlei Ma(Fudan University Shanghai Cancer Center), Huanlong Qin(Tongji University), Ping Wang(Tongji University)
Cancer Cell
June 1, 2023
Cited by 112Open Access
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Abstract

Cyclic GMP-AMP synthase (cGAS) is the major sensor for cytosolic DNA and activates type I interferon signaling and plays an essential role in antitumor immunity. However, it remains unclear whether the cGAS-mediated antitumor activity is affected by nutrient status. Here, our study reports that methionine deprivation enhances cGAS activity by blocking its methylation, which is catalyzed by methyltransferase SUV39H1. We further show that methylation enhances the chromatin sequestration of cGAS in a UHRF1-dependent manner. Blocking cGAS methylation enhances cGAS-mediated antitumor immunity and suppresses colorectal tumorigenesis. Clinically, cGAS methylation in human cancers correlates with poor prognosis. Thus, our results indicate that nutrient stress promotes cGAS activation via reversible methylation, and suggest a potential therapeutic strategy for targeting cGAS methylation in cancer treatment.


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