A non-canonical cGAS–STING–PERK pathway facilitates the translational program critical for senescence and organ fibrosis

被引:0
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作者
Dan Zhang
Yutong Liu
Yezhang Zhu
Qian Zhang
Hongxing Guan
Shengduo Liu
Shasha Chen
Chen Mei
Chen Chen
Zhiyong Liao
Ying Xi
Songying Ouyang
Xin-Hua Feng
Tingbo Liang
Li Shen
Pinglong Xu
机构
[1] Zhejiang University,The MOE Key Laboratory of Biosystems Homeostasis & Protection and Zhejiang Provincial Key Laboratory of Cancer Molecular Cell Biology, Life Sciences Institute
[2] Zhejiang University School of Medicine,Department of Hepatobiliary and Pancreatic Surgery and Zhejiang Provincial Key Laboratory of Pancreatic Disease, The First Affiliated Hospital
[3] Zhejiang University (HIC-ZJU),Hangzhou Global Scientific and Technological Innovation Center
[4] Zhejiang University,Cancer Center
[5] Fujian Normal University,The Key Laboratory of Innate Immune Biology of Fujian Province, Biomedical Research Center of South China, College of Life Sciences
[6] Wenzhou University,Zhejiang Provincial Key Laboratory for Water Environment and Marine Biological Resources Protection, College of Life and Environmental Science
[7] ShanghaiTech University,School of Life Science and Technology
来源
Nature Cell Biology | 2022年 / 24卷
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摘要
Innate DNA sensing via the cyclic GMP-AMP synthase–stimulator of interferon genes (cGAS–STING) mechanism surveys microbial invasion and cellular damage and thus participates in various human infectious diseases, autoimmune diseases and cancers. However, how DNA sensing rapidly and adaptively shapes cellular physiology is incompletely known. Here we identify the STING–PKR-like endoplasmic reticulum kinase (PERK)–eIF2α pathway, a previously unknown cGAS–STING mechanism, enabling an innate immunity control of cap-dependent messenger RNA translation. Upon cGAMP binding, STING at the ER binds and directly activates the ER-located kinase PERK via their intracellular domains, which precedes TBK1–IRF3 activation and is irrelevant to the unfolded protein response. The activated PERK phosphorylates eIF2α, forming an inflammatory- and survival-preferred translation program. Notably, this STING–PERK–eIF2α pathway is evolutionarily primitive and physiologically critical to cellular senescence and organ fibrosis. Pharmacologically or genetically targeting this non-canonical cGAS–STING pathway attenuated lung and kidney fibrosis. Collectively, the findings identify an alternative innate immune pathway and its critical role in organ fibrosis, report an innate immunity-directed translation program and suggest the therapeutic potential for targeting the STING–PERK pathway in treating fibrotic diseases.
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页码:766 / 782
页数:16
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