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精氨酸(78)在代谢型谷氨酸受体mGlu(1)中对激动剂结合和选择性的作用。

The role of Arg(78) in the metabotropic glutamate receptor mGlu(1) for agonist binding and selectivity.

作者信息

Jensen A A, Sheppard P O, O'Hara P J, Krogsgaard-Larsen P, Bräuner-Osborne H

机构信息

NeuroScience PharmaBiotec Research Centre, Department of Medicinal Chemistry, The Royal Danish School of Pharmacy, 2 Universitetsparken, DK-2100, Copenhagen, Denmark.

出版信息

Eur J Pharmacol. 2000 Jun 2;397(2-3):247-53. doi: 10.1016/s0014-2999(00)00283-1.

Abstract

The metabotropic glutamate receptors belong to family C of the G-protein coupled receptor superfamily. These receptors all possess large extracellular amino terminal domains, where agonist binding takes place. We have previously constructed a molecular model of the amino terminal domain of the mGlu(1) receptor based on a weak amino acid sequence similarity with a family of bacterial periplasmic binding proteins (PBPs). The residues Ser(165) and Thr(188) were demonstrated to be involved in agonist binding to the receptor. Here, we report that mutation of Arg(78) in the mGlu(1b) receptor to leucine or glutamate completely knocks out [3H]quisqualic acid binding to the receptor. The constructed mutants, R78L and R78E, have also been characterized in a inositol phosphate assay. Here, the potency of (S)-glutamic acid and (S)-quisqualic acid was reduced 1000- and 100-fold, respectively, on R78L compared to the wild type (WT) receptor. (S)-Quisqualic acid was as potent on mutant R78E as it was on R78L, whereas (S)-glutamic acid was unable to activate R78E significantly at concentrations up to 10 mM. In conclusion, Arg(78) appears to be essential for agonist binding to the mGlu(1) receptor, most likely, through the formation of an ionic bond between its positively charged side chain and the distal acid group of the agonists. Furthermore, the different impact of the two mutations on (S)-glutamic acid and (S)-quisqualic acid potencies strongly indicates that while Arg(78) appears to be a common site of interaction for the agonists, the Group I subtype selectivity of (S)-quisqualic acid is probably determined by other residues in the amino terminal domain.

摘要

代谢型谷氨酸受体属于G蛋白偶联受体超家族的C类。这些受体都具有大的细胞外氨基末端结构域,激动剂结合在此发生。我们之前基于与一类细菌周质结合蛋白(PBPs)的弱氨基酸序列相似性构建了mGlu(1)受体氨基末端结构域的分子模型。已证明丝氨酸(Ser(165))和苏氨酸(Thr(188))残基参与激动剂与该受体的结合。在此,我们报告将mGlu(1b)受体中的精氨酸(Arg(78))突变为亮氨酸或谷氨酸会完全消除[3H]喹啉酸与该受体的结合。构建的突变体R78L和R78E也已在肌醇磷酸测定中进行了表征。在此,与野生型(WT)受体相比,(S)-谷氨酸和(S)-喹啉酸在R78L上的效力分别降低了1000倍和100倍。(S)-喹啉酸在突变体R78E上的效力与在R78L上相同,而(S)-谷氨酸在浓度高达10 mM时无法显著激活R78E。总之,精氨酸(Arg(78))似乎对于激动剂与mGlu(1)受体的结合至关重要,很可能是通过其带正电荷的侧链与激动剂的远端酸性基团形成离子键。此外,这两种突变对(S)-谷氨酸和(S)-喹啉酸效力的不同影响强烈表明,虽然精氨酸(Arg(78))似乎是激动剂的共同相互作用位点,但(S)-喹啉酸的I组亚型选择性可能由氨基末端结构域中的其他残基决定。

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