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TRUSS Exacerbates NAFLD Development by Promoting I κ B α Degradation in Mice
Author(s) -
Yu ChangJiang,
Wang QiuShi,
Wu MingMing,
Song BinLin,
Liang Chen,
Lou Jie,
Tang LiangLiang,
Yu XiaoDi,
Niu Na,
Yang Xu,
Zhang BaoLong,
Qu Yao,
Liu Yang,
Dong ZhiChao,
Zhang ZhiRen
Publication year - 2018
Publication title -
hepatology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 5.488
H-Index - 361
eISSN - 1527-3350
pISSN - 0270-9139
DOI - 10.1002/hep.30066
Subject(s) - steatosis , nonalcoholic fatty liver disease , hepatocyte , endocrinology , fatty liver , medicine , steatohepatitis , biology , cancer research , disease , biochemistry , in vitro
There is no effective treatment method for nonalcoholic fatty liver disease (NAFLD), the most common liver disease. The exact mechanism underlying the pathogenesis of NAFLD remains to be elucidated. Here, we report that tumor necrosis factor receptor–associated ubiquitous scaffolding and signaling protein (TRUSS) acts as a positive regulator of NAFLD and in a variety of metabolic disorders. TRUSS expression was increased in the human liver specimens with NAFLD or nonalcoholic steatohepatitis, and in the livers of high‐fat diet (HFD)‐induced and genetically obese mice. Conditional knockout of TRUSS in hepatocytes significantly ameliorated hepatic steatosis, insulin resistance, glucose intolerance, and inflammatory responses in mice after HFD challenge or in spontaneous obese mice with normal chow feeding. All of these HFD‐induced pathological phenotypes were exacerbated in mice overexpressing TRUSS in hepatocytes. We show that TRUSS physically interacts with the inhibitor of nuclear factor κB α (IκB α ) and promotes the ubiquitination and degradation of IκB α , which leads to aberrant activation of nuclear factor κB (NF‐κB). Overexpressing IκB α S32A/S36A , a phosphorylation‐resistant mutant of IκB α , in the hepatocyte‐specific TRUSS overexpressing mice almost abolished HFD‐induced NAFLD and metabolic disorders. Conclusion : Hepatocyte TRUSS promotes pathological stimuli‐induced NAFLD and metabolic disorders, through activation of NF‐κB by promoting ubiquitination and degradation of IκB α . Our findings may provide a strategy for the prevention and treatment of NAFLD by targeting TRUSS.

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