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III 组代谢型谷氨酸受体不同激动剂亲和力的分子基础。

Molecular basis for the differential agonist affinities of group III metabotropic glutamate receptors.

作者信息

Rosemond Erica, Wang Minghua, Yao Yi, Storjohann Laura, Stormann Thomas, Johnson Edwin C, Hampson David R

机构信息

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

出版信息

Mol Pharmacol. 2004 Oct;66(4):834-42. doi: 10.1124/mol.104.002956. Epub 2004 Jul 1.

Abstract

Agonist stimulation of group III metabotropic glutamate receptors (mGluRs) induces an inhibition of neurotransmitter release from neurons. The group III mGluRs are pharmacologically defined by activation with the glutamate analog L-amino-4-phosphonobutyric acid (L-AP4). The affinities of these receptors for L-AP4 and glutamate vary over approximately a 1500-fold concentration range. The goal of this study was to elucidate the molecular basis for this dispersion of agonist affinities for the group III receptors mGluR4, mGluR6, and mGluR7. [3H]L-AP4 binding was present in human embryonic kidney cells transfected with the high-affinity mGluR4 receptor but not in cells transfected with mGluR6 or the low-affinity mGluR7 receptor. Analysis of mGluR4/mGluR6 receptor chimeras revealed that replacement of the first 35 amino acids of mGluR6 with the first 50 amino acids of mGluR4 was sufficient to impart [3H]L-AP4 binding to mGluR6. Homology models of mGluR4 and mGluR7 were used to predict amino acids that may affect ligand affinity. Mutations were made in mGluR7 to convert selected residues into the equivalent amino acids present in the high-affinity mGluR4 receptor. The mGluR7 N74K mutation caused a 12-fold increase in affinity in a functional assay, whereas the N74K mutation in combination with mutations in residues 258 to 262, which lie outside the binding pocket, caused a 112-fold increase in affinity compared with unmutated mGluR7. Our results demonstrate that the binding site residues at position lysine 74 in mGluR4, glutamine 58 in mGluR6, and asparagine 74 in mGluR7 are key determinants of agonist affinity and that additional residues situated outside of the binding pocket, including those present in the extreme amino terminus, also contribute to agonist affinity and the pharmacological profiles of the group III mGluRs.

摘要

III组代谢型谷氨酸受体(mGluRs)的激动剂刺激可抑制神经元释放神经递质。III组mGluRs在药理学上是通过谷氨酸类似物L-氨基-4-磷酸丁酸(L-AP4)激活来定义的。这些受体对L-AP4和谷氨酸的亲和力在大约1500倍的浓度范围内变化。本研究的目的是阐明III组受体mGluR4、mGluR6和mGluR7激动剂亲和力这种分散现象的分子基础。[3H]L-AP4结合存在于转染了高亲和力mGluR4受体的人胚肾细胞中,但不存在于转染了mGluR6或低亲和力mGluR7受体的细胞中。对mGluR4/mGluR6受体嵌合体的分析表明,用mGluR4的前50个氨基酸替换mGluR6的前35个氨基酸足以使mGluR6具有[3H]L-AP4结合能力。利用mGluR4和mGluR7的同源模型预测可能影响配体亲和力的氨基酸。在mGluR7中进行突变,将选定的残基转化为高亲和力mGluR4受体中存在的等效氨基酸。mGluR7的N74K突变在功能测定中使亲和力增加了12倍,而N74K突变与位于结合口袋之外的258至262位残基的突变相结合,与未突变的mGluR7相比,亲和力增加了112倍。我们的结果表明,mGluR4中74位赖氨酸、mGluR6中58位谷氨酰胺和mGluR7中74位天冬酰胺处的结合位点残基是激动剂亲和力的关键决定因素,并且位于结合口袋之外的其他残基,包括存在于极端氨基末端的那些残基,也对激动剂亲和力和III组mGluRs的药理学特性有贡献。

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