Constitutively activated NLRP3 inflammasome causes inflammation and abnormal skeletal development in mice.

The NLRP3 inflammasome complex is responsible for maturation of the pro-inflammatory cytokine, IL-1β. Mutations in NLRP3 are responsible for the cryopyrinopathies, a spectrum of conditions including neonatal-onset multisystem inflammatory disease (NOMID). While excessive production of IL-1β and syst...

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Main Authors: Sheri L Bonar, Susannah D Brydges, James L Mueller, Matthew D McGeough, Carla Pena, Debbie Chen, Susan K Grimston, Cynthia L Hickman-Brecks, Soumya Ravindran, Audrey McAlinden, Deborah V Novack, Daniel L Kastner, Roberto Civitelli, Hal M Hoffman, Gabriel Mbalaviele
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2012-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3338787?pdf=render
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spelling doaj-753c6534498e4ef1b562627c2624262e2020-11-25T02:33:37ZengPublic Library of Science (PLoS)PLoS ONE1932-62032012-01-0174e3597910.1371/journal.pone.0035979Constitutively activated NLRP3 inflammasome causes inflammation and abnormal skeletal development in mice.Sheri L BonarSusannah D BrydgesJames L MuellerMatthew D McGeoughCarla PenaDebbie ChenSusan K GrimstonCynthia L Hickman-BrecksSoumya RavindranAudrey McAlindenDeborah V NovackDaniel L KastnerRoberto CivitelliHal M HoffmanGabriel MbalavieleThe NLRP3 inflammasome complex is responsible for maturation of the pro-inflammatory cytokine, IL-1β. Mutations in NLRP3 are responsible for the cryopyrinopathies, a spectrum of conditions including neonatal-onset multisystem inflammatory disease (NOMID). While excessive production of IL-1β and systemic inflammation are common to all cryopyrinopathy disorders, skeletal abnormalities, prominently in the knees, and low bone mass are unique features of patients with NOMID. To gain insights into the mechanisms underlying skeletal abnormalities in NOMID, we generated knock-in mice globally expressing the D301N NLRP3 mutation (ortholog of D303N in human NLRP3). NOMID mice exhibit neutrophilia in blood and many tissues, including knee joints, and high levels of serum inflammatory mediators. They also exhibit growth retardation and severe postnatal osteopenia stemming at least in part from abnormally accelerated bone resorption, attended by increased osteoclastogenesis. Histologic analysis of knee joints revealed abnormal growth plates, with loss of chondrocytes and growth arrest in the central region of the epiphyses. Most strikingly, a tissue "spike" was observed in the mid-region of the growth plate in the long bones of all NOMID mice that may be the precursor to more severe deformations analogous to those observed in NOMID patients. These findings provide direct evidence linking a NOMID-associated NLRP3-activating mutation to abnormalities of postnatal skeletal growth and bone remodeling.http://europepmc.org/articles/PMC3338787?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Sheri L Bonar
Susannah D Brydges
James L Mueller
Matthew D McGeough
Carla Pena
Debbie Chen
Susan K Grimston
Cynthia L Hickman-Brecks
Soumya Ravindran
Audrey McAlinden
Deborah V Novack
Daniel L Kastner
Roberto Civitelli
Hal M Hoffman
Gabriel Mbalaviele
spellingShingle Sheri L Bonar
Susannah D Brydges
James L Mueller
Matthew D McGeough
Carla Pena
Debbie Chen
Susan K Grimston
Cynthia L Hickman-Brecks
Soumya Ravindran
Audrey McAlinden
Deborah V Novack
Daniel L Kastner
Roberto Civitelli
Hal M Hoffman
Gabriel Mbalaviele
Constitutively activated NLRP3 inflammasome causes inflammation and abnormal skeletal development in mice.
PLoS ONE
author_facet Sheri L Bonar
Susannah D Brydges
James L Mueller
Matthew D McGeough
Carla Pena
Debbie Chen
Susan K Grimston
Cynthia L Hickman-Brecks
Soumya Ravindran
Audrey McAlinden
Deborah V Novack
Daniel L Kastner
Roberto Civitelli
Hal M Hoffman
Gabriel Mbalaviele
author_sort Sheri L Bonar
title Constitutively activated NLRP3 inflammasome causes inflammation and abnormal skeletal development in mice.
title_short Constitutively activated NLRP3 inflammasome causes inflammation and abnormal skeletal development in mice.
title_full Constitutively activated NLRP3 inflammasome causes inflammation and abnormal skeletal development in mice.
title_fullStr Constitutively activated NLRP3 inflammasome causes inflammation and abnormal skeletal development in mice.
title_full_unstemmed Constitutively activated NLRP3 inflammasome causes inflammation and abnormal skeletal development in mice.
title_sort constitutively activated nlrp3 inflammasome causes inflammation and abnormal skeletal development in mice.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2012-01-01
description The NLRP3 inflammasome complex is responsible for maturation of the pro-inflammatory cytokine, IL-1β. Mutations in NLRP3 are responsible for the cryopyrinopathies, a spectrum of conditions including neonatal-onset multisystem inflammatory disease (NOMID). While excessive production of IL-1β and systemic inflammation are common to all cryopyrinopathy disorders, skeletal abnormalities, prominently in the knees, and low bone mass are unique features of patients with NOMID. To gain insights into the mechanisms underlying skeletal abnormalities in NOMID, we generated knock-in mice globally expressing the D301N NLRP3 mutation (ortholog of D303N in human NLRP3). NOMID mice exhibit neutrophilia in blood and many tissues, including knee joints, and high levels of serum inflammatory mediators. They also exhibit growth retardation and severe postnatal osteopenia stemming at least in part from abnormally accelerated bone resorption, attended by increased osteoclastogenesis. Histologic analysis of knee joints revealed abnormal growth plates, with loss of chondrocytes and growth arrest in the central region of the epiphyses. Most strikingly, a tissue "spike" was observed in the mid-region of the growth plate in the long bones of all NOMID mice that may be the precursor to more severe deformations analogous to those observed in NOMID patients. These findings provide direct evidence linking a NOMID-associated NLRP3-activating mutation to abnormalities of postnatal skeletal growth and bone remodeling.
url http://europepmc.org/articles/PMC3338787?pdf=render
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