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De novo design of protein condensation inhibitors by targeting an allosteric site of cGAS

Nature Communications. 2025-06; 
Wenfeng Zhao, Guofeng Chen, Jian He, Xiaofang Shen, Muya Xiong, Liwei Xiong, Zhihao Qi, Hang Xie, Wanchen Li, Jiameng Li, Huixia Dou, Hangchen Hu, Haixia Su, Qiang Shao, Minjun Li, Hongbin Sun, Yechun Xu State Key Laboratory of Drug Research, Shanghai Institute of Materia Medica, University of Chinese Academy of Sciences, Shanghai, China.
Products/Services Used Details Operation
Gene Synthesis The nucleic acid sequence of h-cGASFL (amino acids 1-522, Uniprot ID: Q8N884), h-cGASCD (amino acids 157-522), N domain of human cGAS (h-cGASN (amino acids 1-157)), and m-cGASCD (amino acids 147-507, Uniprot ID: Q8C6L5) were synthesized at GenScript. Get A Quote

摘要

Cyclic GMP-AMP synthase (cGAS), a key mediator of the cGAS-STING DNA sensing pathway that triggers type-I interferon responses, plays a crucial role in innate immunity and has been implicated in the pathogenesis of various disease. Despite advances in the development of cGAS inhibitors, none have reached the market and there remains an unmet need for divergent chemical scaffolds with high selectivity, potency across species, and target-adaptive mechanisms of action to explore cGAS's potential as a therapeutic target. Here we report the structural, biochemical, cellular, and mechanistic characterization of the XL series of allosteric inhibitors, designed to engage an innovative allosteric site near the activatio... More

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