Loss of hepatocyte identity following aberrant YAP activation: A key mechanism in alcoholic hepatitis

肝细胞 肝再生 河马信号通路 酒精性肝病 癌症研究 酒精性肝炎 细胞生物学 生物 信号转导 再生(生物学) 内科学 肝硬化 医学 体外 生物化学
作者
Mohamed Bou Saleh,Alexandre Louvet,Line Carolle Ntandja‐Wandji,Emmanuel Boleslawski,Viviane Gnemmi,Guillaume Lassailly,Stéphanie Truant,François Maggiotto,Massih Ningarhari,Florent Artru,Emilie Anglo,Pau Sancho‐Bru,Anne Corlu,Josepmaria Argemí,Julie Dubois‐Chevalier,Sébastien Dharancy,Jérôme Eeckhoute,Ramón Bataller,Philippe Mathurin,Laurent Dubuquoy
出处
期刊:Journal of Hepatology [Elsevier BV]
卷期号:75 (4): 912-923 被引量:76
标识
DOI:10.1016/j.jhep.2021.05.041
摘要

Highlights•Unregulated YAP activation is a key player in AH pathogenesis.•YAP activation in AH hepatocytes led to their transdifferentiation, with loss of the hepatocyte identity towards a cholangiocyte program.•In vivo unregulated YAP activation exacerbated hepatocyte transdifferentiation and impaired regeneration in a mouse model.•Therapeutic inhibition of YAP activity blocked the transdifferentiation of hepatocytes in patients with AH.AbstractBackground & AimsAlcoholic hepatitis (AH) is a life-threatening disease with limited therapeutic options, as the molecular mechanisms leading to death are not well understood. This study evaluates the Hippo/Yes-associated protein (YAP) pathway which has been shown to play a role in liver regeneration.MethodThe Hippo/YAP pathway was dissected in explants of patients transplanted for AH or alcohol-related cirrhosis and in control livers, using RNA-seq, real-time PCR, western blot, immunohistochemistry and transcriptome analysis after laser microdissection. We transfected primary human hepatocytes with constitutively active YAP (YAPS127A) and treated HepaRG cells and primary hepatocytes isolated from AH livers with a YAP inhibitor. We also used mouse models of ethanol exposure (Lieber de Carli) and liver regeneration (carbon tetrachloride) after hepatocyte transduction of YAPS127A.ResultsIn AH samples, RNA-seq analysis and immunohistochemistry of total liver and microdissected hepatocytes revealed marked downregulation of the Hippo pathway, demonstrated by lower levels of active MST1 kinase and abnormal activation of YAP in hepatocytes. Overactivation of YAP in hepatocytes in vitro and in vivo led to biliary differentiation and loss of key biological functions such as regeneration capacity. Conversely, a YAP inhibitor restored the mature hepatocyte phenotype in abnormal hepatocytes taken from patients with AH. In ethanol-fed mice, YAP activation using YAPS127A resulted in a loss of hepatocyte differentiation. Hepatocyte proliferation was hampered by YAPS127A after carbon tetrachloride intoxication.ConclusionAberrant activation of YAP plays an important role in hepatocyte transdifferentiation in AH, through a loss of hepatocyte identity and impaired regeneration. Thus, targeting YAP is a promising strategy for the treatment of patients with AH.Lay summaryAlcoholic hepatitis is characterized by inflammation and a life-threatening alteration of liver regeneration, although the mechanisms behind this have not been identified. Herein, we show that liver samples from patients with alcoholic hepatitis are characterized by profound deregulation of the Hippo/YAP pathway with uncontrolled activation of YAP in hepatocytes. We used human cell and mouse models to show that inhibition of YAP reverts this hepatocyte defect and could be a novel therapeutic strategy for alcoholic hepatitis.Graphical abstract
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