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PMID: 24668691 已发表 · ppublish 英语

Bioactive compound reveals a novel function for ribosomal protein S5 in hepatic stellate cell activation and hepatic fibrosis.

Hepatology (Baltimore, Md.) ·第 60 卷 ·第 2 期 ·2014-09-22

Xu Wei-Heng, Hu Hong-Gang, Tian Yuan, Wang Shao-Zhan, Li Jie, Li Jian-Zhong, Deng Xing, Qian Hui, Qiu Lei, Hu Zhen-Lin, Wu Qiu-Ye, Chai Yi-Feng, Guo Cheng, Xie Wei-Fen, Zhang Jun-Ping

摘要

Liver fibrosis and its endstage, cirrhosis, represent a major public health problem worldwide. Activation of hepatic stellate cells (HSCs) is a central event in hepatic fibrosis. However, the proteins that control HSC activation are incompletely understood. Here we show that (6aS, 10S, 11aR, 11bR, 11cS)-10-methylamino-dodecahydro-3a, 7a-diaza-benzo [de]anthracene-8-thione (MASM) exhibits potent inhibitory activity against liver fibrosis in vitro and in vivo associated with the reduction of Akt phosphorylation. Furthermore, ribosomal protein S5 (RPS5) was identified as a direct target of MASM, which stabilized RPS5 in cultured HSCs and in the liver of experimental animals after dimethylnitrosamine (DMN) or bile duct ligation (BDL). Functional studies revealed that RPS5 could prevent HSC activation. RPS5 overexpression in HSCs resulted in Akt dephosphorylation at both Ser473 and Thr308, and led to subsequent dephosphorylation of GSK3β or P70S6K. Progression of DMN- and BDL-induced hepatic fibrosis was aggravated by Rps5 knockdown and alleviated by RPS5 overexpression, which correlated with the modulation of Akt phosphorylation and HSC number in the fibrotic livers. Moreover, RPS5 was substantially reduced in the transdifferentiated HSCs, experimental fibrotic livers, and human cirrhosis samples.,These results demonstrate that RPS5 is implicated in hepatic fibrogenesis and may represent a promising target for potential therapeutic intervention in liver fibrotic diseases.

文献信息
期刊
Hepatology (Baltimore, Md.)
期刊简称
Hepatology
发表日期
2014-09-22
收录日期
2014-07-23
更新日期
2016-11-25
语言
英语
国家/地区
United States
NLM ID
8302946
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