生物
泛素
细胞生物学
信号转导衔接蛋白
线粒体
细菌外膜
胞浆
炎症
化学
信号转导
生物化学
免疫学
基因
酶
大肠杆菌
作者
Esmee Vringer,Rosalie Heilig,Joel S. Riley,A. R. S. Black,Catherine Cloix,George Skalka,Alfredo E. Montes-Gómez,Aurore Aguado,Sérgio Lilla,Henning Walczak,Mads Gyrd‐Hansen,Daniel J. Murphy,Danny T. Huang,Sara Zanivan,Stephen W. G. Tait
标识
DOI:10.1038/s44318-024-00044-1
摘要
Abstract Mitochondrial outer membrane permeabilisation (MOMP) is often essential for apoptosis, by enabling cytochrome c release that leads to caspase activation and rapid cell death. Recently, MOMP has been shown to be inherently pro-inflammatory with emerging cellular roles, including its ability to elicit anti-tumour immunity. Nonetheless, how MOMP triggers inflammation and how the cell regulates this remains poorly defined. We find that upon MOMP, many proteins localised either to inner or outer mitochondrial membranes are ubiquitylated in a promiscuous manner. This extensive ubiquitylation serves to recruit the essential adaptor molecule NEMO, leading to the activation of pro-inflammatory NF-κB signalling. We show that disruption of mitochondrial outer membrane integrity through different means leads to the engagement of a similar pro-inflammatory signalling platform. Therefore, mitochondrial integrity directly controls inflammation, such that permeabilised mitochondria initiate NF-κB signalling.
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