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与III型代谢型谷氨酸受体高亲和力结合的分子决定因素。

Molecular determinants of high affinity binding to group III metabotropic glutamate receptors.

作者信息

Rosemond Erica, Peltekova Vanya, Naples Mark, Thøgersen Henning, Hampson David R

机构信息

Department of Pharmaceutical Sciences, University of Toronto, 19 Russell Street, Toronto, Ontario M5S 2S2, Canada.

出版信息

J Biol Chem. 2002 Mar 1;277(9):7333-40. doi: 10.1074/jbc.M110476200. Epub 2001 Dec 13.

Abstract

The amino-terminal domain containing the ligand binding site of the G protein-coupled metabotropic glutamate receptors (mGluRs) consists of two lobes that close upon agonist binding. In this study, we explored the ligand binding pocket of the Group III mGluR4 receptor subtype using site-directed mutagenesis and radioligand binding. The selection of 16 mutations was guided by a molecular model of mGluR4, which was based on the crystal structure of the mGluR1 receptor. Lysines 74 and 405 are present on lobe I of mGluR4. The mutation of lysine 405 to alanine virtually eliminated the binding of the agonist [(3)H]l-amino-4-phosphonobutyrate ([(3)H]l-AP4). Thus lysine 405, which is conserved in all eight mGluRs, likely represents a fundamental recognition residue for ligand binding to the mGluRs. Single point mutations of lysines 74 or 317, which are not conserved in the mGluRs, to alanine had no effect on agonist affinity, whereas mutation of both residues together caused a loss of ligand binding. Mutation of lysine 74 in mGluR4, or the analogous lysine in mGluR8, to tyrosine (mimicking mGluR1 at this position) produced a large decrease in binding. The reduction in binding is likely due to steric hindrance of the phenolic side chain of tyrosine. The mutation of glutamate 287 to alanine, which is present on lobe II and is not conserved in the mGluR family, caused a loss of [(3)H]l-AP4 binding. We conclude that the determinants of high affinity ligand binding are dispersed across lobes I and II. Our results define a microenvironment within the binding pocket that encompasses several positively charged amino acids that recognize the negatively charged phosphonate group of l-AP4 or the endogenous compound l-serine-O-phosphate.

摘要

含G蛋白偶联代谢型谷氨酸受体(mGluRs)配体结合位点的氨基末端结构域由两个叶组成,它们在激动剂结合时会闭合。在本研究中,我们使用定点诱变和放射性配体结合方法探索了III组mGluR4受体亚型的配体结合口袋。16个突变的选择以mGluR4的分子模型为指导,该模型基于mGluR1受体的晶体结构。赖氨酸74和405位于mGluR4的叶I上。赖氨酸405突变为丙氨酸几乎消除了激动剂[(3)H] -L-氨基-4-膦酰丁酸([(3)H] -L-AP4)的结合。因此,在所有8种mGluRs中都保守的赖氨酸405可能代表配体与mGluRs结合的一个基本识别残基。在mGluRs中不保守的赖氨酸74或317单点突变为丙氨酸对激动剂亲和力没有影响,而两个残基一起突变则导致配体结合丧失。mGluR4中的赖氨酸74或mGluR8中的类似赖氨酸突变为酪氨酸(在该位置模拟mGluR1)导致结合大幅下降。结合的减少可能是由于酪氨酸酚侧链的空间位阻。位于叶II上且在mGluR家族中不保守的谷氨酸287突变为丙氨酸导致[(3)H] -L-AP4结合丧失。我们得出结论,高亲和力配体结合的决定因素分散在叶I和叶II上。我们的结果定义了结合口袋内的一个微环境,该微环境包含几个带正电荷的氨基酸,它们识别L-AP4的带负电荷的膦酸基团或内源性化合物L-丝氨酸-O-磷酸。

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