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RNA结合蛋白ZFP36L1维持胆汁酸代谢的转录后调控。

RNA-binding protein ZFP36L1 maintains posttranscriptional regulation of bile acid metabolism.

作者信息

Tarling Elizabeth J, Clifford Bethan L, Cheng Joan, Morand Pauline, Cheng Angela, Lester Ellen, Sallam Tamer, Turner Martin, de Aguiar Vallim Thomas Q

机构信息

Department of Medicine, Division of Cardiology, and.

Molecular Biology Institute (MBI), UCLA, Los Angeles, California, USA.

出版信息

J Clin Invest. 2017 Oct 2;127(10):3741-3754. doi: 10.1172/JCI94029. Epub 2017 Sep 11.

Abstract

Bile acids function not only as detergents that facilitate lipid absorption but also as signaling molecules that activate the nuclear receptor farnesoid X receptor (FXR). FXR agonists are currently being evaluated as therapeutic agents for a number of hepatic diseases due to their lipid-lowering and antiinflammatory properties. FXR is also essential for maintaining bile acid homeostasis and prevents the accumulation of bile acids. Elevated bile acids activate FXR, which in turn switches off bile acid synthesis by reducing the mRNA levels of bile acid synthesis genes, including cholesterol 7α-hydroxylase (Cyp7a1). Here, we show that FXR activation triggers a rapid posttranscriptional mechanism to degrade Cyp7a1 mRNA. We identified the RNA-binding protein Zfp36l1 as an FXR target gene and determined that gain and loss of function of ZFP36L1 reciprocally regulate Cyp7a1 mRNA and bile acid levels in vivo. Moreover, we found that mice lacking hepatic ZFP36L1 were protected from diet-induced obesity and steatosis. The reduced adiposity and antisteatotic effects observed in ZFP36L1-deficient mice were accompanied by impaired lipid absorption that was consistent with altered bile acid metabolism. Thus, the ZFP36L1-dependent regulation of bile acid metabolism is an important metabolic contributor to obesity and hepatosteatosis.

摘要

胆汁酸不仅作为促进脂质吸收的去污剂发挥作用,还作为激活核受体法尼酯X受体(FXR)的信号分子。由于其降脂和抗炎特性,FXR激动剂目前正在作为多种肝脏疾病的治疗药物进行评估。FXR对于维持胆汁酸稳态也至关重要,并可防止胆汁酸的积累。升高的胆汁酸激活FXR,进而通过降低包括胆固醇7α-羟化酶(Cyp7a1)在内的胆汁酸合成基因的mRNA水平来关闭胆汁酸合成。在此,我们表明FXR激活触发了一种快速的转录后机制来降解Cyp7a1 mRNA。我们将RNA结合蛋白Zfp36l1鉴定为FXR靶基因,并确定ZFP36L1功能的获得和丧失在体内相互调节Cyp7a1 mRNA和胆汁酸水平。此外,我们发现缺乏肝脏ZFP36L1的小鼠可免受饮食诱导的肥胖和脂肪变性。在ZFP36L1缺陷小鼠中观察到的肥胖减轻和抗脂肪变性作用伴随着脂质吸收受损,这与胆汁酸代谢改变一致。因此,ZFP36L1依赖的胆汁酸代谢调节是肥胖和肝脂肪变性的重要代谢因素。

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