| Literature DB >> 29721023 |
Ruijie Gong1, Xiaofei Lv2, Fengqiong Liu1,3.
Abstract
BACKGROUND: The miRNA cluster miR-17-92 is known to act as an oncogene in various cancers. Members of this cluster were also found to be involved in some other pathological process, such as steatosis, which is a pivotal event in the initiation and progression of nonalcoholic fatty liver disease (NAFLD). This study aimed to explore whether miR-17, one of the most functional miRNAs in the miR-17-92 family, participates in the process of steatosis in hepatoma cells.Entities:
Keywords: CYP7A1; Fatty liver; MiRNA-17; Steatosis
Mesh:
Substances:
Year: 2018 PMID: 29721023 PMCID: PMC5907481 DOI: 10.1186/s11658-018-0083-3
Source DB: PubMed Journal: Cell Mol Biol Lett ISSN: 1425-8153 Impact factor: 5.787
Fig. 1miR-17 transgenic mice exhibit extensive steatotic changes in their livers. a Hematoxylin-eosin staining shows excessive lipid accumulation in the liver of transgenic mice. b Quantitative analysis of liver triglyceride shows that the transgenic mouse liver exhibits significantly higher levels of triglyceride than the wild-type mouse liver (n = 10 for each group)
Fig. 2miR-17 induces steatosis in HepG2 cell. a miR-17 overexpression in HepG2 cells stably transfected with miR-17. b Transfection of miR-17 enhanced oleic acid (OA) uptake. c Representative pictures of Oil-Red-O staining of HepG2 cells. “GFP” (green fluorescent protein) represent native control plasmid which didn’t express miR-17. “ctrl” represent cell groups without oleic acid treatment, while “oil” represent cell groups with oleic acid treatment
Fig. 3CYP7A1 is a direct target of miR-17. a Western blotting showed CYP7A1 expression was repressed in the liver of miR-17 transgenic mice. b Expression of CYP7A1 mRNA decreased in miR-17 HepG2 cells. c Protein expression of CYP7A1 was decreased in miR-17 HepG2 cells. d Luciferase activity changed in human psiCHECK-CYP7A1 and miR-17 co-transfection but not for psiCHECK-CYP7A1 mutant
Fig. 4miR-17-induced steatosis depends on the expression of CYP7A1. a Downregulation of CYP7A1 by siRNA transfection in HepG2 cells. b CYP7A1 siRNA transfection promotes steatosis in HepG2 cells. c Upregulation of CYP7A1 by CYP7A1 expression construct transfection in miR-17 HepG2 cells. d Re-introduction of CYP7A1 into miR-17 HepG2 cells could partially alleviate steatosis