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微小RNA-125b通过激活RhoA信号通路促进肝星状细胞活化和肝纤维化。

MicroRNA-125b Promotes Hepatic Stellate Cell Activation and Liver Fibrosis by Activating RhoA Signaling.

作者信息

You Kai, Li Song-Yang, Gong Jiao, Fang Jian-Hong, Zhang Chong, Zhang Min, Yuan Yunfei, Yang Jine, Zhuang Shi-Mei

机构信息

Key Laboratory of Gene Engineering of the Ministry of Education, State Key Laboratory of Biocontrol, Collaborative Innovation Center for Cancer Medicine, School of Life Sciences, Sun Yat-sen University, Guangzhou, China.

Key Laboratory of Liver Disease of Guangdong Province, The Third Affiliated Hospital, Sun Yat-sen University, Guangzhou, China.

出版信息

Mol Ther Nucleic Acids. 2018 Sep 7;12:57-66. doi: 10.1016/j.omtn.2018.04.016. Epub 2018 May 3.

Abstract

miR-125b is frequently dysregulated in different diseases. Activation of hepatic stellate cells (HSCs) is a critical event during liver fibrogenesis. However, the function and its underlying mechanism of miR-125b in HSC activation and liver fibrosis are still unknown. Here, we showed that miR-125b was upregulated in HSCs, but not in hepatocytes, during hepatic fibrogenesis in vivo and upon culture activation in vitro. Inhibition of miR-125b suppressed the expression of profibrogenic genes in culture-activated primary HSCs and reduced the basal and transforming growth factor β (TGF-β)-induced alpha-smooth muscle actin (α-SMA) expression and cell contraction of the immortalized HSC cell line. In contrast, ectopic expression of miR-125b promoted α-SMA expression and HSC contraction. Moreover, antagonizing miR-125b in vivo significantly alleviated liver fibrosis in CCl-treated mice. Mechanistically, overexpression of miR-125b in HSCs enhanced RhoA activity by directly targeting StAR-related lipid transfer (START) domain containing 13 (Stard13), a RhoA-specific GTPase-activating protein, whereas knockdown of miR-125b abrogated RhoA activation. Furthermore, inhibition of RhoA or its downstream molecules, Mrtf-A and Srf, attenuated the miR-125b-induced α-SMA expression and HSC contraction. Therefore, our findings identify a miR-125b-Stard13-RhoA-α-SMA signaling cascade in HSCs and highlight its importance in hepatic fibrosis.

摘要

miR-125b在不同疾病中常发生失调。肝星状细胞(HSC)的激活是肝纤维化过程中的关键事件。然而,miR-125b在HSC激活和肝纤维化中的功能及其潜在机制仍不清楚。在此,我们发现,在体内肝纤维化过程以及体外培养激活时,miR-125b在HSC中上调,但在肝细胞中未上调。抑制miR-125b可抑制培养激活的原代HSC中促纤维化基因的表达,并降低永生化HSC细胞系的基础及转化生长因子β(TGF-β)诱导的α平滑肌肌动蛋白(α-SMA)表达和细胞收缩。相反,miR-125b的异位表达促进α-SMA表达和HSC收缩。此外,在体内拮抗miR-125b可显著减轻CCl4处理小鼠的肝纤维化。机制上,HSC中miR-125b的过表达通过直接靶向含StAR相关脂质转移(START)结构域13(Stard13,一种RhoA特异性GTP酶激活蛋白)增强RhoA活性,而敲低miR-125b可消除RhoA激活。此外,抑制RhoA或其下游分子Mrtf-A和Srf可减弱miR-125b诱导的α-SMA表达和HSC收缩。因此,我们的研究结果确定了HSC中miR-125b-Stard13-RhoA-α-SMA信号级联反应,并突出了其在肝纤维化中的重要性。

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