Literature DB >> 28112179

Dicer1/miR-29/HMGCR axis contributes to hepatic free cholesterol accumulation in mouse non-alcoholic steatohepatitis.

Ming-Xia Liu1,2, Man Gao1,2, Chun-Zhu Li1,2, Cun-Zhi Yu1,2, Hong Yan1,2, Chun Peng1,2, Yu Li1,2, Cheng-Gang Li1,2, Ze-Long Ma1,2, Yang Zhao1,2, Meng-Fan Pu1,2, Ling-Ling Miao1,2, Xin-Ming Qi1,2, Jin Ren1,2.   

Abstract

Dicer1 is an enzyme essential for microRNA (miRNA) maturation. The loss of miRNAs resulted from Dicer1 deficiency greatly contributes to the progression of many diseases, including lipid dysregulation, but its role in hepatic accumulation of free cholesterol (FC) that is critical in the development of non-alcoholic steatohepatitis (NASH) remains elusive. In this study, we used the liver-specific Dicer1-knockout mice to identify the miRNAs involved in hepatic FC accumulation. In a widely used dietary NASH model, mice were fed a methionine-choline-deficient (MCD) diet for 3 weeks, which resulted in significant increase in hepatic FC levels as well as decrease of Dicer1 mRNA levels in livers. The liver-specific Dicer1-knockout induced hepatic FC accumulation at 5-6 weeks, accompanied by increased mRNA and protein levels of 3-hydroxy-3-methylglutaryl coenzyme A reductase (HMGCR), a rate-limiting enzyme of cholesterol synthesis in livers. Eleven predicted miRNAs were screened, revealing that miR-29a/b/c significantly suppressed HMGCR expression by targeting the HMGCR mRNA 3'-UTR. Overexpression of miR-29a in SMMC-7721 cells, a steatosis hepatic cell model, significantly decreased HMGCR expression and the FC level. Furthermore, the expression levels of miR-29a were inversely correlated with HMGCR expression levels in the MCD diet mouse model in vivo and in 2 steatosis hepatic cell models (SMMC-7721 and HL-7702 cells) in vitro. Our results show that Dicer1/miR-29/HMGCR axis contributes to hepatic free cholesterol accumulation in mouse NASH, and miR-29 may serve as an important regulator of hepatic cholesterol homeostasis. Thus, miR-29a could be utilized as a potential therapeutic target for the treatment of non-alcoholic fatty liver disease as well as for other liver diseases associated with FC accumulation.

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Year:  2017        PMID: 28112179      PMCID: PMC5457687          DOI: 10.1038/aps.2016.158

Source DB:  PubMed          Journal:  Acta Pharmacol Sin        ISSN: 1671-4083            Impact factor:   6.150


  54 in total

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Review 2.  MicroRNAs in the Pathogenesis of Nonalcoholic Fatty Liver Disease.

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Review 7.  Role of microRNAs in alcohol-induced liver disorders and non-alcoholic fatty liver disease.

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8.  Analysis of non‑alcoholic fatty liver disease microRNA expression spectra in rat liver tissues.

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10.  Compounds that modulate AMPK activity and hepatic steatosis impact the biosynthesis of microRNAs required to maintain lipid homeostasis in hepatocytes.

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Journal:  EBioMedicine       Date:  2020-03-03       Impact factor: 8.143

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