4.8 Article

Stress-activated miR-21/miR-21* in hepatocytes promotes lipid and glucose metabolic disorders associated with high-fat diet consumption

期刊

GUT
卷 65, 期 11, 页码 1871-1881

出版社

BMJ PUBLISHING GROUP
DOI: 10.1136/gutjnl-2015-310822

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资金

  1. Swiss National Science Foundation [31003A 119862, 31003A 135227, 310030-152618, CRSII3-141798, CRSII3-160717]
  2. Bo & Kerstin Hjelt Foundation
  3. EFSD Research Program in Diabetes and Cancer
  4. Swiss Cancer league [KFS-02502-08-2009]
  5. Novo Nordisk Fonden [NNF15OC0016400] Funding Source: researchfish
  6. Swiss National Science Foundation (SNF) [310030_152618, 31003A_119862, CRSII3_141798, 31003A_135227] Funding Source: Swiss National Science Foundation (SNF)

向作者/读者索取更多资源

Objective miR-21 is an oncomir highly upregulated in hepatocellular carcinoma and in early stages of liver diseases characterised by the presence of steatosis. Whether upregulation of miR-21 contributes to hepatic metabolic disorders and their progression towards cancer is unknown. This study aims at investigating the role of miR-21/miR-21* in early stages of metabolic liver disorders associated with diet-induced obesity (DIO). Design Constitutive miR-21/miR-21* knockout (miR21KO) and liver-specific miR-21/miR-21* knockout (LImiR21KO) mice were generated. Mice were then fed with high-fat diet (HFD) and alterations of the lipid and glucose metabolism were investigated. Serum and ex vivo explanted liver tissue were analysed. Results Under normal breeding conditions and standard diet, miR-21/miR-21* deletion in mice was not associated with any detectable phenotypic alterations. However, when mice were challenged with an obesogenic diet, glucose intolerance, steatosis and adiposity were improved in mice lacking miR-21/miR-21*. Deletion of miR-21/miR-21* specifically in hepatocytes led to similar improvements in mice fed an HFD, indicating a crucial role for hepatic miR-21/miR-21* in metabolic disorders associated with DIO. Further molecular analyses demonstrated that miR-21/miR-21* deletion in hepatocytes increases insulin sensitivity and modulates the expression of multiple key metabolic transcription factors involved in fatty acid uptake, de novo lipogenesis, gluconeogenesis and glucose output. Conclusions Hepatic miR-21/miR-21* deficiency prevents glucose intolerance and steatosis in mice fed an obesogenic diet by altering the expression of several master metabolic regulators. This study points out miR-21/miR-21* as a potential therapeutic target for nonalcoholic fatty liver disease and the metabolic syndrome.

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