上睑下垂
炎症体
细胞生物学
胞浆
细胞外
细胞内
脂多糖
胞外囊泡
生物
先天免疫系统
内吞作用
CD14型
化学
免疫系统
受体
免疫学
微泡
生物化学
基因
小RNA
酶
作者
P. Hima Kumari,Swathy O. Vasudevan,Ashley J. Russo,Skylar S. Wright,Víctor Fraile-Ágreda,Dylan Krajewski,Evan R. Jellison,Ignacio Rubio,Michael Bauer,Atsushi Shimoyama,Koichi Fukase,Yuanpeng Zhang,Joel S. Pachter,Sivapriya Kailasan Vanaja,Vijay Rathinam
标识
DOI:10.1038/s41556-023-01269-8
摘要
Intracellular surveillance for systemic microbial components during homeostasis and infections governs host physiology and immunity. However, a long-standing question is how circulating microbial ligands become accessible to intracellular receptors. Here we show a role for host-derived extracellular vesicles (EVs) in this process; human and murine plasma-derived and cell culture-derived EVs have an intrinsic capacity to bind bacterial lipopolysaccharide (LPS). Remarkably, circulating host EVs capture blood-borne LPS in vivo, and the LPS-laden EVs confer cytosolic access for LPS, triggering non-canonical inflammasome activation of gasdermin D and pyroptosis. Mechanistically, the interaction between the lipid bilayer of EVs and the lipid A of LPS underlies EV capture of LPS, and the intracellular transfer of LPS by EVs is mediated by CD14. Overall, this study demonstrates that EVs capture and escort systemic LPS to the cytosol licensing inflammasome responses, uncovering EVs as a previously unrecognized link between systemic microbial ligands and intracellular surveillance. Kumari et al. show that host-derived extracellular vesicles capture systemic LPS and transfer it to the cytosol of immune cells via CD14-dependent endocytosis, triggering caspase-11-mediated gasdermin D activation and pyroptosis.
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