Department of Biochemistry and Biophysics, Texas A&M University, College Station, TX, United States.
Department of Biochemistry and Biophysics, Texas A&M University, College Station, TX, United States.
Adv Immunol. 2024;162:1-21. doi: 10.1016/bs.ai.2024.02.003. Epub 2024 Mar 2.
Double stranded DNA (dsDNA) in the cytoplasm triggers the cGAS-STING innate immune pathway to defend against pathogenic infections, tissue damage and malignant cells. Extensive structural and functional studies over the last couple of years have enabled the molecular understanding of dsDNA induced activation of the cGAS-STING signaling pathway. This review highlights recent advances in the structural characterization of key molecules in the cGAS-STING signaling axis by focusing on the mechanism of cGAS activation by dsDNA, the regulation of cGAS activity, the mechanism of STING activation by cGAMP, the molecular basis of TBK1 recruitment and activation by STING, the structural basis of IRF3 recruitment by STING, and the mechanism of IRF3 activation upon phosphorylation by TBK1. These comprehensive structural studies provide a detailed picture of the mechanism of the cGAS-STING signaling pathway, establishing a molecular framework for the development of novel therapeutic strategies targeting this pathway.
细胞质中的双链 DNA(dsDNA)触发 cGAS-STING 先天免疫途径,以抵御病原感染、组织损伤和恶性细胞。过去几年中广泛的结构和功能研究使人们能够从分子水平理解 dsDNA 诱导的 cGAS-STING 信号通路的激活。本综述通过关注 dsDNA 激活 cGAS 的机制、cGAS 活性的调节、cGAMP 激活 STING 的机制、STING 募集和激活 TBK1 的分子基础、STING 募集 IRF3 的结构基础以及 TBK1 磷酸化激活 IRF3 的机制,重点介绍 cGAS-STING 信号轴关键分子的结构特征方面的最新进展,为靶向该途径的新型治疗策略的发展提供了分子框架。这些全面的结构研究提供了 cGAS-STING 信号通路机制的详细图片,为靶向该途径的新型治疗策略的发展提供了分子框架。