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β-环糊精-七肽胃泌素及胆囊收缩素2型受体第三细胞外环的构象与分子模拟研究

Conformational and molecular modeling studies of beta-cyclodextrin-heptagastrin and the third extracellular loop of the cholecystokinin 2 receptor.

作者信息

Giragossian Craig, Schaschke Norbert, Moroder Luis, Mierke Dale F

机构信息

Department of Chemistry, Division of Biology and Medicine, Brown University, Providence, Rhode Island 02912, USA.

出版信息

Biochemistry. 2004 Mar 16;43(10):2724-31. doi: 10.1021/bi035509w.

Abstract

The conformational features of a conjugate of the C-terminus of human gastrin (HG[11-17]), the shortest gastrin sequence retaining biological function, with beta-cyclodextrin ([Nle(15)]-HG[11-17]-betaCD) were determined by NMR spectroscopy in an aqueous solution of dodecylphosphocholine (DPC) micelles. The peptide-betaCD conjugate displays a binding affinity and activation profile comparable to those of HG[11-17] at the cholecysokinin 2 (CCK(2)) receptor, the G protein-coupled receptor responsible for the gastrointestinal function of gastrin. The structure of the peptide consisted of a well-defined beta-turn between Gly(13) and Asp(16) of gastrin. The structural preferences of [Nle(15)]-HG[11-17]-betaCD in DPC micelles and the 5-doxylstearate-induced relaxation of the (1)H NMR resonances support a membrane-associated receptor recognition mechanism. Addition of [Nle(15)]-HG[11-17]-betaCD to the third extracellular loop domain of the CCK(2) receptor, CCK(2)-R(352-379), generated a number of intermolecular nuclear Overhauser enhancements (NOEs) and chemical shift perturbations. NOE-restrained MD simulations of the [Nle(15)]-HG[11-17]-betaCD-CCK(2)-R complex produced a topological orientation in which the C-terminus was located in a shallow hydrophobic pocket near the confluence of TM2 and -3. Despite the steric bulk and physicochemical properties of betaCD, the [Nle(15)]-HG[11-17]-betaCD-CCK(2)-R complex is similar to the CCK-8-CCK(2)-R complex determined previously, providing insight into the mode of ligand binding and the role of electrostatic interactions.

摘要

人胃泌素(HG[11 - 17])是保留生物功能的最短胃泌素序列,其C末端与β - 环糊精([Nle(15)] - HG[11 - 17] - βCD)的缀合物的构象特征,通过核磁共振光谱在十二烷基磷酸胆碱(DPC)胶束的水溶液中测定。该肽 - βCD缀合物在胆囊收缩素2(CCK(2))受体上表现出与HG[11 - 17]相当的结合亲和力和激活谱,CCK(2)受体是负责胃泌素胃肠功能的G蛋白偶联受体。该肽的结构由胃泌素的Gly(13)和Asp(16)之间明确的β - 转角组成。[Nle(15)] - HG[11 - 17] - βCD在DPC胶束中的结构偏好以及5 - 脱氧硬脂酸盐诱导的(1)H NMR共振弛豫支持膜相关受体识别机制。将[Nle(15)] - HG[11 - 17] - βCD添加到CCK(2)受体的第三个细胞外环结构域CCK(2) - R(352 - 379)中,产生了许多分子间核Overhauser增强效应(NOE)和化学位移扰动。对[Nle(15)] - HG[11 - 17] - βCD - CCK(2) - R复合物的NOE约束分子动力学模拟产生了一种拓扑取向,其中C末端位于TM2和 - 3汇合处附近的浅疏水口袋中。尽管βCD具有空间体积和物理化学性质,但[Nle(15)] - HG[11 - 17] - βCD - CCK(2) - R复合物与先前确定的CCK - 8 - CCK(2) - R复合物相似,这为配体结合模式和静电相互作用的作用提供了见解。

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