上睑下垂
炎症体
刺
线粒体
细胞生物学
干扰素基因刺激剂
急性呼吸窘迫综合征
生物
线粒体分裂
炎症
免疫学
医学
药理学
肺
先天免疫系统
免疫系统
内科学
工程类
航空航天工程
作者
Shishi Zou,Yifan Zuo,Yukai Chen,Tianyu Zhang,Tinglv Fu,Guorui Li,Rui Xiong,Bohao Liu,Yong Hu,Zhaoyu Hu,Chunguang Miao,Xiaojing Wu,Ning Li,Qing Geng
标识
DOI:10.1007/s00018-025-05774-x
摘要
The stimulator of interferon genes (STING) pathway serves as a crucial nexus in inflammatory responses and cell death. Despite its role in Mitochondria-Endoplasmic Reticulum Contact (MERC), the mechanistic contributions to inflammatory outcomes remain poorly understood. In clinical acute respiratory distress syndrome (ARDS) models of COVID-19 infection and animal models of LPS-induced acute lung injury (ALI), the STING pathway is closely associated with the pyroptosis pathway. The macrophage STING-N-GSDMD-mtDNA positive feedback loop, upon LPS challenge, induces inflammatory responses and pyroptosis. The GSDMD inhibitor disulfiram (DSF) specifically abrogates the N-terminal portion of GSDMD anchored to the mitochondrial membrane. Furthermore, macrophage STING mediates the direct interaction between Drp1 and N-GSDMD on mitochondrial membrane by regulating mitochondrial calcium, linking mitochondrial fission to the induction of inflammatory responses. Targeting STING-mediated mitochondrial homeostasis, both genetically and pharmacologically, may play a protective role in preventing and treating sepsis-induced acute lung injury. Overall, our study posits that STING deficiency mitigates the cooperative interaction between N-GSDMD and Drp1 in mediating mitochondrial permeabilization and rupture following LPS challenge, paving the way for further investigations into inflammation and pyroptosis.
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