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促甲状腺激素释放激素与小鼠垂体受体的结合不涉及离子相互作用。中性肽与G蛋白偶联受体结合的模型。

Thyrotropin-releasing hormone binding to the mouse pituitary receptor does not involve ionic interactions. A model for neutral peptide binding to G protein-coupled receptors.

作者信息

Perlman J H, Nussenzveig D R, Osman R, Gershengorn M C

机构信息

Department of Medicine, Cornell University Medical College, New York Hospital, New York 10021.

出版信息

J Biol Chem. 1992 Dec 5;267(34):24413-7.

PMID:1332958
Abstract

Thyrotropin-releasing hormone, TRH (< Glu-His-Proamide), and [N tau-Me-His]TRH (MeTRH) are present as neutral and positively charged forms at physiologic pH, and it was possible that they bind to the TRH receptor (TRH-R) as charged (protonated) species. Binding affinities of TRH and MeTRH to endogenous rat TRH-Rs and to transfected wild type mouse TRH-Rs decreased below pH 7.1. Half-maximal decreases in binding occurred at the approximate pK alpha values of these ligands. Asp to Ala mutations in extracellular loop 1, TM-4, and TM-5 did not decrease binding affinity, but an Asp to Ala mutation in TM-2 caused the affinity to decrease 8-fold. The pH dependences of binding of MeTRH, however, were similar in wild type and all mutant receptors and were consistent with the protonated form of MeTRH binding less well. Thus, the binding of TRH to its receptor does not involve ionic interactions and may be a prototype for binding of neutral peptide ligands to G protein-coupled receptors.

摘要

促甲状腺激素释放激素(TRH,即 )和 [N tau-Me-His]TRH(MeTRH)在生理pH值下以中性和带正电荷的形式存在,它们有可能以带电荷(质子化)的形式与促甲状腺激素释放激素受体(TRH-R)结合。TRH和MeTRH与内源性大鼠TRH-Rs以及转染的野生型小鼠TRH-Rs的结合亲和力在pH 7.1以下降低。结合亲和力的半数最大降低发生在这些配体的近似pKα值处。细胞外环1、跨膜结构域4(TM-4)和跨膜结构域5(TM-5)中的天冬氨酸(Asp)突变为丙氨酸(Ala)不会降低结合亲和力,但TM-2中的Asp突变为Ala会导致亲和力降低8倍。然而,MeTRH结合的pH依赖性在野生型和所有突变受体中相似,并且与MeTRH质子化形式结合较差一致。因此,TRH与其受体的结合不涉及离子相互作用,可能是中性肽配体与G蛋白偶联受体结合的一个范例。

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Thyrotropin-releasing hormone binding to the mouse pituitary receptor does not involve ionic interactions. A model for neutral peptide binding to G protein-coupled receptors.促甲状腺激素释放激素与小鼠垂体受体的结合不涉及离子相互作用。中性肽与G蛋白偶联受体结合的模型。
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