The Farnesoid X Receptor Regulates Adipocyte Differentiation and Function by Promoting Peroxisome Proliferator-activated Receptor-gamma and Interfering with the Wnt/beta-Catenin Pathways

Mouaadh Abdelkarim, Sandrine Caron, Christian Duhem, Janne Prawitt, Julie Dumont, Anthony Lucas, Emmanuel Bouchaert, Olivier Briand, John Brozek, Folkert Kuipers, Catherine Fievet, Bertrand Cariou, Bart Staels*

*Corresponding author voor dit werk

    OnderzoeksoutputAcademicpeer review

    78 Citaten (Scopus)

    Samenvatting

    The bile acid receptor farnesoid X receptor (FXR) is expressed in adipose tissue, but its function remains poorly defined. Peroxisome proliferator-activated receptor-gamma (PPAR gamma) is a master regulator of adipocyte differentiation and function. The aim of this study was to analyze the role of FXR in adipocyte function and to assess whether it modulates PPAR gamma action. Therefore, we tested the responsiveness of FXR-deficient mice (FXR-/-) and cells to the PPAR gamma activator rosiglitazone. Our results show that genetically obese FXR-/-/ob/ob mice displayed a resistance to rosiglitazone treatment. In vitro, rosiglitazone treatment did not induce normal adipocyte differentiation and lipid droplet formation in FXR-/- mouse embryonic fibroblasts (MEFs) and preadipocytes. Moreover, FXR-/- MEFs displayed both an increased lipolysis and a decreased de novo lipogenesis, resulting in reduced intracellular triglyceride content, even upon PPAR gamma activation. Retroviral-mediated FXR re-expression in FXR-/- MEFs restored the induction of adipogenic marker genes during rosiglitazone-forced adipocyte differentiation. The expression of Wnt/beta-catenin pathway and target genes was increased in FXR-/- adipose tissue and MEFs. Moreover, the expression of several endogenous inhibitors of this pathway was decreased early during the adipocyte differentiation of FXR-/- MEFs. These findings demonstrate that FXR regulates adipocyte differentiation and function by regulating two counteracting pathways of adipocyte differentiation, the PPAR gamma and Wnt/beta-catenin pathways.

    Originele taal-2English
    Pagina's (van-tot)36759-36767
    Aantal pagina's9
    TijdschriftThe Journal of Biological Chemistry
    Volume285
    Nummer van het tijdschrift47
    DOI's
    StatusPublished - 19-nov.-2010

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