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CK2与RNF4的相互作用协调核受体FXR的非经典SUMO化和降解。

A CK2-RNF4 interplay coordinates non-canonical SUMOylation and degradation of nuclear receptor FXR.

作者信息

Bilodeau Stéphanie, Caron Véronique, Gagnon Jonathan, Kuftedjian Alexandre, Tremblay André

机构信息

Research Center, CHU Sainte-Justine, Montréal, Québec, H3T 1C5 Canada.

Department of Biochemistry and Molecular Medicine, Faculty of Medicine, University of Montreal, Montréal, Québec, H3T 1J4 Canada.

出版信息

J Mol Cell Biol. 2017 Jun 1;9(3):195-208. doi: 10.1093/jmcb/mjx009.

Abstract

Farnesoid X receptor (FXR) is a ligand-activated nuclear receptor that plays a central role in regulating genes involved in bile acid homeostasis, and fat and glucose metabolism. Here, we demonstrate a post-translational interplay between FXR phosphorylation, SUMOylation, and ubiquitination that directs the receptor into an activation-degradation pathway in hepatocytes. We identify a non-canonical SUMOylation motif termed pSuM that conjugates SUMO2 at Lys-325 of FXR under the direct control of casein kinase 2 (CK2), which provides the required negative charge for Ubc9 and PIAS1 to perform SUMOylation, by phosphorylating Ser-327. Lys-325 SUMOylation is indispensable to the promotion of efficient ligand activation and transcriptional coactivation of FXR. Constitutive pSuM activation using a phospho-mimic Ser-327 mutant or catalytic CK2 expression strongly induces SUMO2 conjugation, which directs FXR ubiquitination and proteasome-dependent degradation. We also determine that such SUMOylation-dependent ubiquitination of FXR is mediated by the E3 ubiquitin ligase RNF4, which is required to achieve maximal induction of FXR and optimal up- or downregulation of responsive genes involved in bile acid homeostasis and liver regeneration. Our findings identify a highly regulated atypical SUMO conjugation motif that serves to coordinate FXR transcriptional competence, thereby expanding the intricate dynamics of the SUMOylation process used by incoming signals to govern metabolic gene regulation.

摘要

法尼酯X受体(FXR)是一种配体激活的核受体,在调节参与胆汁酸稳态以及脂肪和葡萄糖代谢的基因方面发挥着核心作用。在此,我们展示了FXR磷酸化、SUMO化和泛素化之间的翻译后相互作用,这种相互作用将该受体导向肝细胞中的激活-降解途径。我们鉴定出一种非经典的SUMO化基序,称为pSuM,它在酪蛋白激酶2(CK2)的直接控制下,在FXR的赖氨酸325位点结合SUMO2,CK2通过磷酸化丝氨酸327为Ubc9和PIAS1进行SUMO化提供所需的负电荷。赖氨酸325位点的SUMO化对于促进FXR的有效配体激活和转录共激活是必不可少的。使用磷酸模拟丝氨酸327突变体或催化性CK2表达进行组成型pSuM激活会强烈诱导SUMO2结合,从而导致FXR泛素化和蛋白酶体依赖性降解。我们还确定,FXR的这种SUMO化依赖性泛素化是由E3泛素连接酶RNF4介导的,RNF4是实现FXR的最大诱导以及参与胆汁酸稳态和肝脏再生的响应基因的最佳上调或下调所必需的。我们的研究结果鉴定出一个高度调控的非典型SUMO结合基序,该基序用于协调FXR的转录能力,从而扩展了SUMO化过程复杂的动力学,SUMO化过程被传入信号用于控制代谢基因调控。

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