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对V(1a)血管加压素受体整个第二细胞外环的系统分析:确定了在整个G蛋白偶联受体家族中保守的关键残基。

Systematic analysis of the entire second extracellular loop of the V(1a) vasopressin receptor: key residues, conserved throughout a G-protein-coupled receptor family, identified.

作者信息

Conner Matthew, Hawtin Stuart R, Simms John, Wootten Denise, Lawson Zoe, Conner Alex C, Parslow Rosemary A, Wheatley Mark

机构信息

School of Biosciences, University of Birmingham, Edgbaston, Birmingham B15 2TT, United Kingdom.

出版信息

J Biol Chem. 2007 Jun 15;282(24):17405-12. doi: 10.1074/jbc.M702151200. Epub 2007 Apr 2.

Abstract

The roles of extracellular residues of G-protein-coupled receptors (GPCRs) are not well defined compared with residues in transmembrane helices. Nevertheless, it has been established that extracellular domains of both peptide-GPCRs and amine-GPCRs incorporate functionally important residues. Extracellular loop 2 (ECL2) has attracted particular interest, because the x-ray structure of bovine rhodopsin revealed that ECL2 projects into the binding crevice within the transmembrane bundle. Our study provides the first comprehensive investigation into the role of the individual residues comprising the entire ECL2 domain of a small peptide-GPCR. Using the V(1a) vasopressin receptor, systematic substitution of all of the ECL2 residues by Ala generated 30 mutant receptors that were characterized pharmacologically. The majority of these mutant receptor constructs (24 in total) had essentially wild-type ligand binding and intracellular signaling characteristics, indicating that these residues are not critical for normal receptor function. However, four aromatic residues Phe(189), Trp(206), Phe(209), and Tyr(218) are important for agonist binding and receptor activation and are highly conserved throughout the neurohypophysial hormone subfamily of peptide-GPCRs. Located in the middle of ECL2, juxtaposed to the highly conserved disulfide bond, Trp(206) and Phe(209) project into the binding crevice. Indeed, Phe(209) is part of the Cys-X-X-X-Ar (where Ar is an aromatic residue) motif, which is well conserved in both peptide-GPCRs and amine-GPCRs. In contrast, Phe(189) and Tyr(218), located at the extreme ends of ECL2, may be important for determining the position of the ECL2 cap over the binding crevice. This study provides mechanistic insight into the roles of highly conserved ECL2 residues.

摘要

与跨膜螺旋中的残基相比,G蛋白偶联受体(GPCRs)细胞外残基的作用尚未得到很好的界定。然而,已经确定肽类GPCRs和胺类GPCRs的细胞外结构域都包含功能上重要的残基。细胞外环2(ECL2)引起了特别的关注,因为牛视紫红质的X射线结构显示ECL2伸入跨膜束内的结合裂隙中。我们的研究首次全面调查了构成小肽类GPCR整个ECL2结构域的各个残基的作用。使用V(1a)血管加压素受体,将ECL2的所有残基系统地替换为丙氨酸,产生了30种突变受体,并对其进行了药理学表征。这些突变受体构建体中的大多数(总共24个)具有基本的野生型配体结合和细胞内信号传导特征,表明这些残基对于正常受体功能并非至关重要。然而,四个芳香族残基苯丙氨酸(Phe189)、色氨酸(Trp206)、苯丙氨酸(Phe209)和酪氨酸(Tyr218)对于激动剂结合和受体激活很重要,并且在肽类GPCRs的神经垂体激素亚家族中高度保守。位于ECL2中间,与高度保守的二硫键并列,色氨酸(Trp206)和苯丙氨酸(Phe209)伸入结合裂隙。实际上,苯丙氨酸(Phe209)是Cys-X-X-X-Ar(其中Ar是芳香族残基)基序的一部分,该基序在肽类GPCRs和胺类GPCRs中都高度保守。相比之下,位于ECL2两端的苯丙氨酸(Phe189)和酪氨酸(Tyr218)可能对于确定ECL2帽在结合裂隙上的位置很重要。这项研究为高度保守的ECL2残基的作用提供了机制上的见解。

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