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测定人甘丙肽受体 3 的受体-配体相互作用。

Determining receptor-ligand interaction of human galanin receptor type 3.

机构信息

Department of Neurochemistry, Stockholm University, Stockholm, Sweden.

出版信息

Neurochem Int. 2010 Dec;57(7):804-11. doi: 10.1016/j.neuint.2010.08.018. Epub 2010 Sep 9.

Abstract

Galanin is a neuropeptide found throughout the central and peripheral nervous systems of a wide range of species, ranging from human and mouse to frog and tuna. Galanin mediates its physiological roles through three receptors (GalR1-3), all members of the G-protein coupled receptor family. In mapping these roles, receptor subtype selective ligands are crucial tools. To facilitate the ligand design, data on receptor structure and interaction points are of great importance. The current study investigates the mechanism by which galanin interacts with GalR3. Mutated receptors were tested with competitive binding analysis in vitro. Our studies identify six mutagenic constructs that lost receptor affinity completely, despite being expressed at the cell surface. Mutations of the Tyr103(3.33) in transmembrane helix (TM) III, His251(6.51) in TM VI, Arg273(7.35) or His277(7.39) in TM VII, Phe263(6.63) or Tyr270(7.32) in the extracellular loop III all result in complete reduction of ligand binding. In addition, docking studies of an in silico model of GalR3 propose that four of the identified residues interact with pharmacophores situated within the galanin(2-6) sequence. This study provides novel insights into the interaction between ligands and GalR3 and highlights the requirement for correct design of targeting ligands.

摘要

甘丙肽是一种神经肽,广泛存在于多种物种的中枢和外周神经系统中,从人类和老鼠到青蛙和金枪鱼。甘丙肽通过三种受体(GalR1-3)发挥其生理作用,这三种受体均属于 G 蛋白偶联受体家族。在研究这些作用时,受体亚型选择性配体是至关重要的工具。为了便于配体设计,有关受体结构和相互作用点的数据非常重要。本研究探讨了甘丙肽与 GalR3 相互作用的机制。体外竞争结合分析测试了突变受体。我们的研究确定了六个突变体构建体,尽管它们在细胞表面表达,但完全丧失了受体亲和力。突变跨膜螺旋 (TM) III 中的 Tyr103(3.33)、TM VI 中的 His251(6.51)、TM VII 中的 Arg273(7.35)或 His277(7.39)、细胞外环 III 中的 Phe263(6.63)或 Tyr270(7.32)都会导致配体结合完全减少。此外,GalR3 的计算机模型的对接研究表明,所鉴定的四个残基与位于甘丙肽(2-6)序列内的药效团相互作用。这项研究提供了关于配体与 GalR3 相互作用的新见解,并强调了正确设计靶向配体的必要性。

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