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Publication : HSPA12A is required for adipocyte differentiation and diet-induced obesity through a positive feedback regulation with PPARγ.

First Author  Zhang X Year  2019
Journal  Cell Death Differ Volume  26
Issue  11 Pages  2253-2267
PubMed ID  30742088 Mgi Jnum  J:287930
Mgi Id  MGI:6390661 Doi  10.1038/s41418-019-0300-2
Citation  Zhang X, et al. (2019) HSPA12A is required for adipocyte differentiation and diet-induced obesity through a positive feedback regulation with PPARgamma. Cell Death Differ 26(11):2253-2267
abstractText  Obesity is one of the most serious public health problems. Peroxisome proliferator-activated receptor gamma (PPARgamma) plays the master role in adipocyte differentiation for obesity development. However, optimum anti-obesity drug has yet been developed, mandating more investigation to identify novel regulator in obesity pathogenesis. Heat shock protein 12A (HSPA12A) encodes a novel member of the HSP70 family. Here, we report that obese patients showed increased adipose HSPA12A expression, which was positively correlated with increase of body mass index. Intriguingly, knockout of HSPA12A (Hspa12a(-/-)) in mice attenuated high-fat diet (HFD)-induced weight gain, adiposity, hyperlipidemia, and hyperglycemia compared to their wild type (WT) littermates. Increased insulin sensitivity was observed in Hspa12a(-/-) mice compared to WT mice. The HFD-induced upregulation of PPARgamma and its target adipogenic genes in white adipose tissues (WAT) of Hspa12a(-/-) mice were also attenuated. Loss- and gain-of-function studies revealed that the differentiation of primary adipocyte precursors, as well as the expression of PPARgamma and target adipogenic genes during the differentiation, was suppressed by HSPA12A deficiency whereas promoted by HSPA12A overexpression. Importantly, PPARgamma inhibition by GW9662 reversed the HSPA12A-mediated adipocyte differentiation. On the other hand, HSPA12A expression was downregulated by PPARgamma inhibition but upregulated by PPARgamma activation in primary adipocytes. A direct binding of PPARgamma to the PPAR response element in the Hspa12a promoter region was confirmed by chromatin immunoprecipitation assay, and this binding was increased after differentiation of primary adipocytes. These findings indicate that HSPA12A is a novel regulator of adipocyte differentiation and diet-induced obesity through a positive feedback regulation with PPARgamma. HSPA12A inhibition might represent a viable strategy for the management of obesity in humans.
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