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NLRP3 lacking the leucine-rich repeat domain can be fully activated via the canonical inflammasome pathway

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dc.contributor.author Hafner-Bratkovic, Iva
dc.contributor.author Susjan, Petra
dc.contributor.author Lainscek, Dusko
dc.contributor.author Tapia-Abellán, Ana
dc.contributor.author Cerovic, Kosta
dc.contributor.author Kadunc, Lucija
dc.contributor.author Angosto-Bazarra, Diego
dc.contributor.author Pelegrín, Pablo
dc.contributor.author Jerala, Roman
dc.date.accessioned 2026-01-19T16:00:23Z
dc.date.available 2026-01-19T16:00:23Z
dc.date.issued 2018-12-05
dc.identifier.citation Hafner-Bratkovi? I, Su?jan P, Lain??ek D, Tapia-Abellán A, Cerovi? K, Kadunc L, et al. NLRP3 lacking the leucine-rich repeat domain can be fully activated via the canonical inflammasome pathway. Nat Commun. 5 de diciembre de 2018;9(1):5182.
dc.identifier.issn 2041-1723
dc.identifier.uri https://sms.carm.es/ricsmur/handle/123456789/23598
dc.description.abstract NLRP3 is a cytosolic sensor triggered by different pathogen- and self-derived signals that plays a central role in a variety of pathological conditions, including sterile inflammation. The leucine-rich repeat domain is present in several innate immune receptors, where it is frequently responsible for sensing danger signals and regulation of activation. Here we show by reconstitution of truncated and chimeric variants into Nlrp3(-/-) macrophages that the leucine-rich repeat domain is dispensable for activation and self-regulation of NLRP3 by several different triggers. The pyrin domain on the other hand is required to maintain NLRP3 in the inactive conformation. A fully responsive minimal NLRP3 truncation variant reconstitutes peritonitis in Nlrp3(-/-) mice. We demonstrate that in contrast to pathogen-activated NLRC4, the constitutively active NLRP3 molecule cannot engage wild-type NLRP3 molecules in a self-catalytic oligomerization. This lack of signal amplification is likely a protective mechanism to decrease sensitivity to endogenous triggers to impede autoinflammation.
dc.language.iso eng
dc.publisher NATURE PUBLISHING GROUP
dc.rights Atribución/Reconocimiento 4.0 Internacional
dc.rights.uri https://creativecommons.org/licenses/by/4.0/deed.es *
dc.subject.mesh Animals
dc.subject.mesh Apoptosis Regulatory Proteins/genetics/immunology
dc.subject.mesh Calcium-Binding Proteins/genetics/immunology
dc.subject.mesh Female
dc.subject.mesh Humans
dc.subject.mesh Inflammasomes/chemistry/genetics/immunology
dc.subject.mesh Inflammation/genetics/immunology
dc.subject.mesh Leucine/genetics/immunology
dc.subject.mesh Macrophages/immunology
dc.subject.mesh Male
dc.subject.mesh Mice
dc.subject.mesh Mice, Inbred C57BL
dc.subject.mesh Mice, Knockout
dc.subject.mesh NLR Family, Pyrin Domain-Containing 3 Protein/chemistry/genetics/immunology
dc.subject.mesh Protein Domains
dc.title NLRP3 lacking the leucine-rich repeat domain can be fully activated via the canonical inflammasome pathway
dc.type info:eu-repo/semantics/article
dc.identifier.pmid 30518920
dc.relation.publisherversion https://www.nature.com/articles/s41467-018-07573-4
dc.type.version info:eu-repo/semantics/publishedVersion
dc.identifier.doi 10.1038/s41467-018-07573-4
dc.journal.title Nature Communications


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