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Norway

PMID:20519122  

PGC1beta mediates PPARgamma activation of osteoclastogenesis and rosiglitazone-induced bone loss.

Wei Wei | Xueqian Wang | Marie Yang | Leslie C Smith | Paul C Dechow | Junichiro Sonoda | Ronald M Evans | Yihong Wan
Cell metabolism | 2010

Long-term usage of rosiglitazone, a synthetic PPARgamma agonist, increases fracture rates among diabetic patients. PPARgamma suppresses osteoblastogenesis while activating osteoclastogenesis, suggesting that rosiglitazone decreases bone formation while sustaining or increasing bone resorption. Using mouse models with genetically altered PPARgamma, PGC1beta, or ERRalpha, here we show that PGC1beta is required for the resorption-enhancing effects of rosiglitazone. PPARgamma activation indirectly induces PGC1beta expression by downregulating beta-catenin and derepressing c-jun. PGC1beta, in turn, functions as a PPARgamma coactivator to stimulate osteoclast differentiation. Complementarily, PPARgamma also induces ERRalpha expression, which coordinates with PGC1beta to enhance mitochondrial biogenesis and osteoclast function. ERRalpha knockout mice exhibit osteoclast defects, revealing ERRalpha as an important regulator of osteoclastogenesis. Strikingly, PGC1beta deletion in osteoclasts confers complete resistance to rosiglitazone-induced bone loss. These findings identify PGC1beta as an essential mediator for the PPARgamma stimulation of osteoclastogenesis by targeting both PPARgamma itself and ERRalpha, thus activating two distinct transcriptional programs.

Pubmed ID: 20519122

Research resources used in this publication

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Associated grants

  • Agency: NHLBI NIH HHS, United States
    Id: R01 HL105278
  • Agency: NIDDK NIH HHS, United States
    Id: R37 DK057978
  • Agency: NCI NIH HHS, United States
    Id: P30 CA014195
  • Agency: NIDDK NIH HHS, United States
    Id: DK057978
  • Agency: NIDDK NIH HHS, United States
    Id: R24 DK090962
  • Agency: NIDDK NIH HHS, United States
    Id: R01 DK089113
  • Agency: Howard Hughes Medical Institute, United States

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RRID:SCR_014842

Core facility established to assist the Salk community with integrating genomics data into their research. The primary focus of the core is to provide analysis support for next-generation sequencing applications.

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