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甘丙肽与其GTP结合蛋白偶联受体GalR1结合的诱变及配体修饰研究。

Mutagenesis and ligand modification studies on galanin binding to its GTP-binding-protein-coupled receptor GalR1.

作者信息

Berthold M, Kahl U, Juréus A, Kask K, Nordvall G, Langel U, Bartfai T

机构信息

Department of Neurochemistry and Neurotoxicology, Stockholm University, Sweden.

出版信息

Eur J Biochem. 1997 Oct 15;249(2):601-6. doi: 10.1111/j.1432-1033.1997.00601.x.

Abstract

In this study, a large number of receptor mutants were generated and several N-terminally modified galanin analogues synthesized to refine the previously proposed binding site model for galanin to its GTP-binding-protein-coupled receptor GalR1. In addition to ligand-binding studies, the functionality of mutant receptors was evaluated by assessing their ability to mediate galaninergic inhibition of isoproterenol-stimulated adenylyl cyclase activity. The His264Ala and Phe282Ala receptor mutants, although deficient in binding in the concentration range of galanin used, remain functional albeit 20-fold less efficient than the wild-type receptor in mediating inhibition of stimulated cAMP production by galanin. The His267Ala mutant is, apart from being deficient in galanin binding, also severely impaired in functional coupling. While His264 and Phe282 seem to be important in forming the binding pocket for galanin, His267 might play a role in forming or stabilizing the active conformation of the GalR1 receptor rather than directly participating in the formation of the binding pocket for galanin. N-terminal carboxylic acid analogues of galanin have low affinity to wild-type GalR1, but substantially increased affinity to the Glu271Lys receptor mutant. This, together with the finding that an alanine substitution of Phe115 in TM III results in a tenfold decrease in affinity for galanin, suggests that the N-terminus of galanin interacts with Phe115. In contrast to the Phe282Ala mutation in TM VII, a conservative mutation of Phe282 to tyrosine did not alter the affinity for galanin. Thus, the interaction between Tyr9 of galanin and Phe282 is likely to be of an aromatic-aromatic nature.

摘要

在本研究中,生成了大量受体突变体,并合成了几种N端修饰的甘丙肽类似物,以完善先前提出的甘丙肽与其GTP结合蛋白偶联受体GalR1的结合位点模型。除了配体结合研究外,还通过评估突变受体介导甘丙肽对异丙肾上腺素刺激的腺苷酸环化酶活性的抑制能力,来评价其功能。His264Ala和Phe282Ala受体突变体,尽管在所用甘丙肽浓度范围内结合存在缺陷,但仍具有功能,不过在介导甘丙肽对刺激的cAMP产生的抑制作用方面,其效率比野生型受体低20倍。His267Ala突变体,除了甘丙肽结合存在缺陷外,在功能偶联方面也严重受损。虽然His264和Phe282似乎在形成甘丙肽的结合口袋中很重要,但His267可能在形成或稳定GalR1受体的活性构象中起作用,而不是直接参与甘丙肽结合口袋的形成。甘丙肽的N端羧酸类似物对野生型GalR1亲和力低,但对Glu271Lys受体突变体的亲和力大幅增加。这与以下发现一起,即跨膜区III中Phe115的丙氨酸取代导致对甘丙肽的亲和力降低10倍,表明甘丙肽的N端与Phe115相互作用。与跨膜区VII中的Phe282Ala突变相反,Phe282保守突变为酪氨酸并未改变对甘丙肽的亲和力。因此,甘丙肽的Tyr9与Phe282之间的相互作用可能是芳香-芳香性质的。

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