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Rapid induction of inflammatory lipid mediators by the inflammasome in vivo

Detection of microbial products by host inflammasomes is critical for innate immune surveillance. Inflammasomes activate the CASPASE-1 (CASP1) protease, which processes the cytokines interleukin(IL)-1β and -18, and initiates a lytic host cell death called pyroptosis(1). To identify novel CASP1 funct...

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Autores principales: von Moltke, Jakob, Trinidad, Norver J., Moayeri, Mahtab, Kintzer, Alexander F., Wang, Samantha B., van Rooijen, Nico, Brown, Charles R., Krantz, Bryan A., Leppla, Stephen H., Gronert, Karsten, Vance, Russell E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3465483/
https://www.ncbi.nlm.nih.gov/pubmed/22902502
http://dx.doi.org/10.1038/nature11351
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author von Moltke, Jakob
Trinidad, Norver J.
Moayeri, Mahtab
Kintzer, Alexander F.
Wang, Samantha B.
van Rooijen, Nico
Brown, Charles R.
Krantz, Bryan A.
Leppla, Stephen H.
Gronert, Karsten
Vance, Russell E.
author_facet von Moltke, Jakob
Trinidad, Norver J.
Moayeri, Mahtab
Kintzer, Alexander F.
Wang, Samantha B.
van Rooijen, Nico
Brown, Charles R.
Krantz, Bryan A.
Leppla, Stephen H.
Gronert, Karsten
Vance, Russell E.
author_sort von Moltke, Jakob
collection PubMed
description Detection of microbial products by host inflammasomes is critical for innate immune surveillance. Inflammasomes activate the CASPASE-1 (CASP1) protease, which processes the cytokines interleukin(IL)-1β and -18, and initiates a lytic host cell death called pyroptosis(1). To identify novel CASP1 functions in vivo, we devised a strategy for cytosolic delivery of bacterial flagellin, a specific ligand for the NAIP5 (NLR family, apoptosis inhibitory protein 5)/NLRC4 (NLR family, CARD domain containing 4) inflammasome(2–4). Here we show that systemic inflammasome activation by flagellin leads to loss of vascular fluid into the intestine and peritoneal cavity, resulting in rapid (< 30 minutes) death in mice. This unexpected response depends on the inflammasome components NAIP5, NLRC4, and CASP1, but is independent of IL-1β/-18 production. Instead, inflammasome activation results, within minutes, in an ‘eicosanoid storm’ – a pathological release of signaling lipids that rapidly initiate inflammation and vascular fluid loss. Mice deficient in cyclooxygenase-1 (COX-1), a critical enzyme in prostaglandin biosynthesis, are resistant to these rapid pathological effects of systemic inflammasome activation by either flagellin or anthrax lethal toxin. Inflammasome-dependent biosynthesis of eicosanoids is mediated by activation of cPLA2 (cytosolic phospholipase A2) in resident peritoneal macrophages, which are specifically primed for production of eicosanoids by high expression of eicosanoid biosynthetic enzymes. Thus, our results identify eicosanoids as a novel cell type-specific signaling output of the inflammasome with dramatic physiological consequences in vivo.
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spelling pubmed-34654832013-04-04 Rapid induction of inflammatory lipid mediators by the inflammasome in vivo von Moltke, Jakob Trinidad, Norver J. Moayeri, Mahtab Kintzer, Alexander F. Wang, Samantha B. van Rooijen, Nico Brown, Charles R. Krantz, Bryan A. Leppla, Stephen H. Gronert, Karsten Vance, Russell E. Nature Article Detection of microbial products by host inflammasomes is critical for innate immune surveillance. Inflammasomes activate the CASPASE-1 (CASP1) protease, which processes the cytokines interleukin(IL)-1β and -18, and initiates a lytic host cell death called pyroptosis(1). To identify novel CASP1 functions in vivo, we devised a strategy for cytosolic delivery of bacterial flagellin, a specific ligand for the NAIP5 (NLR family, apoptosis inhibitory protein 5)/NLRC4 (NLR family, CARD domain containing 4) inflammasome(2–4). Here we show that systemic inflammasome activation by flagellin leads to loss of vascular fluid into the intestine and peritoneal cavity, resulting in rapid (< 30 minutes) death in mice. This unexpected response depends on the inflammasome components NAIP5, NLRC4, and CASP1, but is independent of IL-1β/-18 production. Instead, inflammasome activation results, within minutes, in an ‘eicosanoid storm’ – a pathological release of signaling lipids that rapidly initiate inflammation and vascular fluid loss. Mice deficient in cyclooxygenase-1 (COX-1), a critical enzyme in prostaglandin biosynthesis, are resistant to these rapid pathological effects of systemic inflammasome activation by either flagellin or anthrax lethal toxin. Inflammasome-dependent biosynthesis of eicosanoids is mediated by activation of cPLA2 (cytosolic phospholipase A2) in resident peritoneal macrophages, which are specifically primed for production of eicosanoids by high expression of eicosanoid biosynthetic enzymes. Thus, our results identify eicosanoids as a novel cell type-specific signaling output of the inflammasome with dramatic physiological consequences in vivo. 2012-08-19 2012-10-04 /pmc/articles/PMC3465483/ /pubmed/22902502 http://dx.doi.org/10.1038/nature11351 Text en Users may view, print, copy, download and text and data- mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
von Moltke, Jakob
Trinidad, Norver J.
Moayeri, Mahtab
Kintzer, Alexander F.
Wang, Samantha B.
van Rooijen, Nico
Brown, Charles R.
Krantz, Bryan A.
Leppla, Stephen H.
Gronert, Karsten
Vance, Russell E.
Rapid induction of inflammatory lipid mediators by the inflammasome in vivo
title Rapid induction of inflammatory lipid mediators by the inflammasome in vivo
title_full Rapid induction of inflammatory lipid mediators by the inflammasome in vivo
title_fullStr Rapid induction of inflammatory lipid mediators by the inflammasome in vivo
title_full_unstemmed Rapid induction of inflammatory lipid mediators by the inflammasome in vivo
title_short Rapid induction of inflammatory lipid mediators by the inflammasome in vivo
title_sort rapid induction of inflammatory lipid mediators by the inflammasome in vivo
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3465483/
https://www.ncbi.nlm.nih.gov/pubmed/22902502
http://dx.doi.org/10.1038/nature11351
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