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NLRP3 inflammasome assembly is regulated by phosphorylation of the pyrin domain.


ABSTRACT: NLRP3 is a cytosolic pattern recognition receptor that senses microbes and endogenous danger signals. Upon activation, NLRP3 forms an inflammasome with the adapter ASC, resulting in caspase-1 activation, release of proinflammatory cytokines and cell death. How NLRP3 activation is regulated by transcriptional and posttranslational mechanisms to prevent aberrant activation remains incompletely understood. Here, we identify three conserved phosphorylation sites in NLRP3 and demonstrate that NLRP3 activation is controlled by phosphorylation of its pyrin domain (PYD). Phosphomimetic residues in NLRP3 PYD abrogate inflammasome activation and structural modeling indicates that phosphorylation of the PYD regulates charge-charge interaction between two PYDs that are essential for NLRP3 activation. Phosphatase 2A (PP2A) inhibition or knock-down drastically reduces NLRP3 activation, showing that PP2A can license inflammasome assembly via dephosphorylating NLRP3 PYD. These results propose that the balance between kinases and phosphatases acting on the NLRP3 PYD is critical for NLRP3 activation.

SUBMITTER: Stutz A 

PROVIDER: S-EPMC5460996 | biostudies-literature | 2017 Jun

REPOSITORIES: biostudies-literature

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NLRP3 inflammasome assembly is regulated by phosphorylation of the pyrin domain.

Stutz Andrea A   Kolbe Carl-Christian CC   Stahl Rainer R   Horvath Gabor L GL   Franklin Bernardo S BS   van Ray Olivia O   Brinkschulte Rebecca R   Geyer Matthias M   Meissner Felix F   Latz Eicke E  

The Journal of experimental medicine 20170502 6


NLRP3 is a cytosolic pattern recognition receptor that senses microbes and endogenous danger signals. Upon activation, NLRP3 forms an inflammasome with the adapter ASC, resulting in caspase-1 activation, release of proinflammatory cytokines and cell death. How NLRP3 activation is regulated by transcriptional and posttranslational mechanisms to prevent aberrant activation remains incompletely understood. Here, we identify three conserved phosphorylation sites in NLRP3 and demonstrate that NLRP3 a  ...[more]

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