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与反向激动剂结合的人5-羟色胺血清素受体的晶体结构。

Crystal structure of the human 5-HT serotonin receptor bound to an inverse agonist.

作者信息

Yin Wanchao, Zhou X Edward, Yang Dehua, de Waal Parker W, Wang Meitian, Dai Antao, Cai Xiaoqing, Huang Chia-Ying, Liu Ping, Wang Xiaoxi, Yin Yanting, Liu Bo, Zhou Yu, Wang Jiang, Liu Hong, Caffrey Martin, Melcher Karsten, Xu Yechun, Wang Ming-Wei, Xu H Eric, Jiang Yi

机构信息

1VARI-SIMM Center, Center for Structure and Function of Drug Targets, The CAS Key Laboratory of Receptor Research, Shanghai Institute of Materia Medica, Chinese Academy of Sciences, Shanghai, 201203 China.

2University of Chinese Academy of Sciences, No.19 A Yuquan Road, Beijing, 100049 China.

出版信息

Cell Discov. 2018 Mar 13;4:12. doi: 10.1038/s41421-018-0009-2. eCollection 2018.

Abstract

5-hydroxytryptamine (5-HT, also known as serotonin) regulates many physiological processes through the 5-HT receptor family. Here we report the crystal structure of 5-HT subtype receptor (5-HTR) bound to the psychotropic serotonin receptor inverse agonist methiothepin (MT). Crystallization was facilitated by replacing ICL3 with a novel optimized variant of BRIL (OB1) that enhances the formation of intermolecular polar interactions, making OB1 a potential useful tool for structural studies of membrane proteins. Unlike the agonist ergotamine (ERG), MT occupies only the conserved orthosteric binding pocket, explaining the wide spectrum effect of MT on serotonin receptors. Compared with ERG, MT shifts toward TM6 and sterically pushes residues W327, F330 and F331 from inside the orthosteric binding pocket, leading to an outward movement of the extracellular end and a corresponding inward shift of the intracellular end of TM6, a feature shared by other reported inactive G protein-coupled receptor (GPCR) structures. Together with the previous agonist-bound serotonin receptor structures, the inverse agonist-bound 5-HTR structure identifies a basis for the ligand-mediated switch of 5-HTR activity and provides a structural understanding of the inactivation mechanism of 5-HTR and some other class A GPCRs, characterized by ligand-induced outward movement of the extracellular end of TM6 that is coupled with inward movement of the cytoplasmic end of this helix.

摘要

5-羟色胺(5-HT,也称为血清素)通过5-HT受体家族调节许多生理过程。在此,我们报告了与精神活性血清素受体反向激动剂甲硫噻嗪(MT)结合的5-HT亚型受体(5-HTR)的晶体结构。用一种新型优化的BRIL变体(OB1)取代ICL3促进了结晶,该变体增强了分子间极性相互作用的形成,使OB1成为膜蛋白结构研究的潜在有用工具。与激动剂麦角胺(ERG)不同,MT仅占据保守的正构结合口袋,这解释了MT对血清素受体的广泛作用。与ERG相比,MT向TM6移动并从正构结合口袋内部空间推动残基W327、F330和F331,导致细胞外端向外移动以及TM6细胞内端相应向内移动,这是其他报道的无活性G蛋白偶联受体(GPCR)结构共有的特征。结合先前与激动剂结合的血清素受体结构,与反向激动剂结合的5-HTR结构确定了5-HTR活性的配体介导开关的基础,并提供了对5-HTR和其他一些A类GPCR失活机制的结构理解,其特征在于配体诱导的TM6细胞外端向外移动并与该螺旋的细胞质端向内移动相关联。

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