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microRNA-29b prevents liver fibrosis by attenuating hepatic stellate cell activation and inducing apoptosis through targeting PI3K/AKT pathway

机译:microRNA-29b通过减缓肝星状细胞的活化并通过靶向PI3K / AKT途径诱导凋亡来预防肝纤维化

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摘要

microRNA-29b (miR-29b) is known to be associated with TGF-β-mediated fibrosis, but the mechanistic action of miR-29b in liver fibrosis remains unclear and is warranted for investigation. We found that miR-29b was significantly downregulated in human and mice fibrotic liver tissues and in primary activated HSCs. miR-29b downregulation was directly mediated by Smad3 through binding to the promoter of miR-29b in hepatic stellate cell (HSC) line LX1, whilst miR-29b could in turn suppress Smad3 expression. miR-29b transduction in the liver of mice prevented CCl4 induced-fibrogenesis, concomitant with decreased expression of α-SMA, collagen I and TIMP-1. Ectopic expression of miR-29b in activated HSCs (LX-1, HSC-T6) inhibited cell viability and colony formation, and caused cell cycle arrest in G1 phase by downregulating cyclin D1 and p21cip1. Further, miR-29b induced apoptosis in HSCs mediated by caspase-9 and PARP. miR-29b inhibited its downstream effectors of PIK3R1 and AKT3 through direct targeting their 3′UTR regions. Moreover, knockdown of PIK3R1 or AKT3 suppressed α-SMA and collagen I and induced apoptosis in both HSCs and in mice. In conclusion, miR-29b prevents liver fibrogenesis by inhibiting HSC activation and inducing HSC apoptosis through inhibiting PI3K/AKT pathway. These results provide novel mechanistic insights for the anti-fibrotic effect of miR-29b.
机译:已知microRNA-29b(miR-29b)与TGF-β介导的纤维化有关,但miR-29b在肝纤维化中的机制作用尚不清楚,值得研究。我们发现,miR-29b在人和小鼠的纤维化肝组织以及原发性激活的HSC中显着下调。 Smad3通过与肝星状细胞(HSC)系LX1中miR-29b的启动子结合而直接介导miR-29b的下调,而miR-29b进而可以抑制Smad3的表达。小鼠肝脏中的miR-29b转导可阻止CCl4诱导的纤维生成,并伴随α-SMA,胶原蛋白I和TIMP-1表达的降低。 miR-29b在活化的HSC(LX-1,HSC-T6)中异位表达抑制细胞活力和集落形成,并通过下调cyclin D1和p21 cip1 导致G1期细胞周期停滞。此外,miR-29b诱导了由caspase-9和PARP介导的HSC凋亡。 miR-29b通过直接靶向PIK3R1和AKT3的3'UTR区来抑制其下游效应子。此外,敲低PIK3R1或AKT3可抑制α-SMA和胶原蛋白I,并诱导HSC和小鼠体内的细胞凋亡。总之,miR-29b通过抑制HSC活化并通过抑制PI3K / AKT途径诱导HSC凋亡来预防肝纤维化。这些结果为miR-29b的抗纤维化作用提供了新颖的机理见解。

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