Literature DB >> 31819254

Apolipoprotein C3 induces inflammation and organ damage by alternative inflammasome activation.

Ulrich Laufs1, Thimoteus Speer2, Stephen Zewinger3, Jochen Reiser4, Vera Jankowski5, Dalia Alansary6, Eunsil Hahm4, Sarah Triem3, Mira Klug3, Stefan J Schunk3, David Schmit3, Rafael Kramann7,8, Christina Körbel9, Emmanuel Ampofo9, Matthias W Laschke9, Simina-Ramona Selejan10, Anna Paschen3, Tobias Herter3, Susanne Schuster1, Günther Silbernagel11, Martina Sester12, Urban Sester3, Gunter Aßmann13, Robert Bals14, Gerhard Kostner15, Willi Jahnen-Dechent16, Michael D Menger9, Lucia Rohrer17, Winfried März18,19,20, Michael Böhm10, Joachim Jankowski5,21, Manfred Kopf22, Eicke Latz23,24,25, Barbara A Niemeyer6, Danilo Fliser3.   

Abstract

NLRP3-inflammasome-driven inflammation is involved in the pathogenesis of a variety of diseases. Identification of endogenous inflammasome activators is essential for the development of new anti-inflammatory treatment strategies. Here, we identified that apolipoprotein C3 (ApoC3) activates the NLRP3 inflammasome in human monocytes by inducing an alternative NLRP3 inflammasome via caspase-8 and dimerization of Toll-like receptors 2 and 4. Alternative inflammasome activation in human monocytes is mediated by the Toll-like receptor adapter protein SCIMP. This triggers Lyn/Syk-dependent calcium entry and the production of reactive oxygen species, leading to activation of caspase-8. In humanized mouse models, ApoC3 activated human monocytes in vivo to impede endothelial regeneration and promote kidney injury in an NLRP3- and caspase-8-dependent manner. These data provide new insights into the regulation of the NLRP3 inflammasome and the pathophysiological role of triglyceride-rich lipoproteins containing ApoC3. Targeting ApoC3 might prevent organ damage and provide an anti-inflammatory treatment for vascular and kidney diseases.

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Year:  2019        PMID: 31819254     DOI: 10.1038/s41590-019-0548-1

Source DB:  PubMed          Journal:  Nat Immunol        ISSN: 1529-2908            Impact factor:   25.606


  50 in total

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