Cryo-electron tomography of NLRP3-activated ASC complexes reveals organelle co-localization

NLRP3 induces caspase-1-dependent pyroptotic cell death to drive inflammation. Aberrant activity of NLRP3 occurs in many human diseases. NLRP3 activation induces ASC polymerization into a single, micron-scale perinuclear punctum. Higher resolution imaging of this signaling platform is needed to unde...

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Veröffentlicht in:Nature communications 2023-11, Vol.14 (1), p.7246-15, Article 7246
Hauptverfasser: Liu, Yangci, Zhai, Haoming, Alemayehu, Helen, Boulanger, Jérôme, Hopkins, Lee J., Borgeaud, Alicia C., Heroven, Christina, Howe, Jonathan D., Leigh, Kendra E., Bryant, Clare E., Modis, Yorgo
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Sprache:eng
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Zusammenfassung:NLRP3 induces caspase-1-dependent pyroptotic cell death to drive inflammation. Aberrant activity of NLRP3 occurs in many human diseases. NLRP3 activation induces ASC polymerization into a single, micron-scale perinuclear punctum. Higher resolution imaging of this signaling platform is needed to understand how it induces pyroptosis. Here, we apply correlative cryo-light microscopy and cryo-electron tomography to visualize ASC/caspase-1 in NLRP3-activated cells. The puncta are composed of branched ASC filaments, with a tubular core formed by the pyrin domain. Ribosomes and Golgi-like or endosomal vesicles permeate the filament network, consistent with roles for these organelles in NLRP3 activation. Mitochondria are not associated with ASC but have outer-membrane discontinuities the same size as gasdermin D pores, consistent with our data showing gasdermin D associates with mitochondria and contributes to mitochondrial depolarization. The authors characterized puncta in the ASC complex by correlative light microscopy and cryo-ET in cells and propose an ultrastructure of the ASC filament network.
ISSN:2041-1723
2041-1723
DOI:10.1038/s41467-023-43180-8