NLRP3 phosphorylation in its LRR domain critically regulates inflammasome assembly

Archive ouverte

Niu, Tingting | de Rosny, Charlotte | Chautard, Séverine | Rey, Amaury | Patoli, Danish | Groslambert, Marine | Cosson, Camille | Lagrange, Brice | Zhang, Zhirong | Visvikis, Orane | Hacot, Sabine | Hologne, Maggy | Walker, Olivier | Wong, Jeimin | Wang, Ping | Ricci, Roméo | Henry, Thomas | Boyer, Laurent | Petrilli, Virginie | Py, Bénédicte

Edité par CCSD ; Nature Publishing Group -

International audience. Abstract NLRP3 controls the secretion of inflammatory cytokines IL-1β/18 and pyroptosis by assembling the inflammasome. Upon coordinated priming and activation stimuli, NLRP3 recruits NEK7 within hetero-oligomers that nucleate ASC and caspase-1 filaments, but the apical molecular mechanisms underlying inflammasome assembly remain elusive. Here we show that NEK7 recruitment to NLRP3 is controlled by the phosphorylation status of NLRP3 S803 located within the interaction surface, in which NLRP3 S803 is phosphorylated upon priming and later dephosphorylated upon activation. Phosphomimetic substitutions of S803 abolish NEK7 recruitment and inflammasome activity in macrophages in vitro and in vivo. In addition, NLRP3-NEK7 binding is also essential for NLRP3 deubiquitination by BRCC3 and subsequently inflammasome assembly, with NLRP3 phosphomimetic mutants showing enhanced ubiquitination and degradation than wildtype NLRP3. Finally, we identify CSNK1A1 as the kinase targeting NLRP3 S803. Our findings thus reveal NLRP3 S803 phosphorylation status as a druggable apical molecular mechanism controlling inflammasome assembly.

Suggestions

Du même auteur

Functional diversity of NLRP3 gain-of-function mutants associated with CAPS autoinflammation

Archive ouverte | Cosson, Camille | CCSD

International audience. NLRP3-associated autoinflammatory disease is a heterogenous group of monogenic conditions caused by NLRP3 gain-of-function mutations. The poor functional characterization of most NLRP3 varian...

NLRP3 controls ATM activation in response to DNA damage

Archive ouverte | Bodnar-Wachtel, Mélanie | CCSD

The DNA damage response (DDR) is essential to preserve genomic integrity and acts as a barrier to cancer. The ATM pathway orchestrates the cellular response to DNA double strand breaks (DSBs), and its attenuation is frequent durin...

Escherichia coli Rho GTPase-activating toxin CNF1 mediates NLRP3 inflammasome activation via p21-activated kinases-1/2 during bacteraemia in mice

Archive ouverte | Dufies, Océane | CCSD

International audience

Chargement des enrichissements...