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Publication : Interferon regulatory factor 9 protects against hepatic insulin resistance and steatosis in male mice.

First Author  Wang XA Year  2013
Journal  Hepatology Volume  58
Issue  2 Pages  603-16
PubMed ID  23471885 Mgi Jnum  J:310033
Mgi Id  MGI:6760715 Doi  10.1002/hep.26368
Citation  Wang XA, et al. (2013) Interferon regulatory factor 9 protects against hepatic insulin resistance and steatosis in male mice. Hepatology 58(2):603-16
abstractText  UNLABELLED: Obesity is a calorie-excessive state associated with high risk of diabetes, atherosclerosis, and certain types of tumors. Obesity may induce inflammation and insulin resistance (IR). We found that the expression of interferon (IFN) regulatory factor 9 (IRF9), a major transcription factor mediating IFN responses, was lower in livers of obese mice than in those of their lean counterparts. Furthermore, whole-body IRF9 knockout (KO) mice were more obese and had aggravated IR, hepatic steatosis, and inflammation after chronic high-fat diet feeding. In contrast, adenoviral-mediated hepatic IRF9 overexpression in both diet-induced and genetically (ob/ob) obese mice showed markedly improved hepatic insulin sensitivity and attenuated hepatic steatosis and inflammation. We further employed a yeast two-hybrid screening system to investigate the interactions between IRF9 and its cofactors. Importantly, we identified that IRF9 interacts with peroxisome proliferator-activated receptor alpha (PPAR-alpha), an important metabolism-associated nuclear receptor, to activate PPAR-alpha target genes. In addition, liver-specific PPAR-alpha overexpression rescued insulin sensitivity and ameliorated hepatic steatosis and inflammation in IRF9 KO mice. CONCLUSION: IRF9 attenuates hepatic IR, steatosis, and inflammation through interaction with PPAR-alpha.
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