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利用脂化胃泌素肽对胆囊收缩素B/胃泌素受体的配体结合位点进行图谱绘制及分子模拟

Mapping of ligand binding sites of the cholecystokinin-B/gastrin receptor with lipo-gastrin peptides and molecular modeling.

作者信息

Lutz J, Romano-Götsch R, Escrieut C, Fourmy D, Mathä B, Müller G, Kessler H, Moroder L

机构信息

Max-Planck-Institut für Biochemie, Martinsried, Germany.

出版信息

Biopolymers. 1997 Jun;41(7):799-817. doi: 10.1002/(SICI)1097-0282(199706)41:7<799::AID-BIP8>3.0.CO;2-K.

Abstract

Double-tailed lipo-tetragastrin derivatives of increasing fatty acid chain length were used to identify the minimum size of the fatty acid moieties (> or = C10) that restricts the access to the CCK-B/gastrin (CCK: cholecystokinin) receptor via a membrane-bound pathway. Then dimyristoyl-mercaptoglycerol/maleoyl-gastrin adducts of increasing peptide chain length were synthesized to define the minimal peptide size required for receptor binding affinities comparable, to those of underivatized gastrin peptides despite anchorage of the lipid tails in the membrane bilayer. The experimental results indicated that most of the little-gastrin sequence, i.e., 2-17, is needed for optimal interaction of the molecule with the binding cleft of the receptor. From these data experimentally based restraints could be derived for docking of lipo-gastrin onto a CCK-B/gastrin receptor model applying molecular dynamics simulations and energy minimizations. In the receptor-bound state some of the secondary structure elements of gastrin as determined by nmr analysis of gastrin-peptides in low dielectric constant media are retained. The N-terminal gastrin portion interacts in a more or less extended conformation with the receptor surface, and upon a sharp kink at the Ala-Tyr dipeptide portion the C-terminal pentapeptide amide part inserts deeply into the helix bundle. Besides Arg-57 on top of helix 1 of the receptor, for which no potential interaction with the ligand could be detected, the other amino acid residues identified by mutagenesis studies as involved in gastrin recognition were found to interact with the C-terminal portion of gastrin. Even taking into account the strong limitations of such a model system, it represents an interesting tool for rationalizing the experimental results of the extensive structure-function studies performed previously on gastrin and to delineate more precisely the putative ligand binding site on the extracellular face of the receptor.

摘要

使用脂肪酸链长度递增的双尾脂四肽胃泌素衍生物来确定通过膜结合途径限制进入CCK - B/胃泌素(CCK:胆囊收缩素)受体的脂肪酸部分的最小尺寸(≥C10)。然后合成了肽链长度递增的二肉豆蔻酰 - 巯基甘油/马来酰 - 胃泌素加合物,以确定尽管脂质尾巴锚定在膜双层中,但与未衍生化的胃泌素肽具有相当受体结合亲和力所需的最小肽尺寸。实验结果表明,分子与受体结合裂隙的最佳相互作用需要大部分小胃泌素序列,即2 - 17。基于这些数据,可以通过分子动力学模拟和能量最小化得出基于实验的限制条件,用于将脂胃泌素对接至CCK - B/胃泌素受体模型。在受体结合状态下,通过低介电常数介质中胃泌素肽的核磁共振分析确定的胃泌素的一些二级结构元件得以保留。胃泌素的N端部分以或多或少的伸展构象与受体表面相互作用,并且在Ala - Tyr二肽部分处急剧扭结后,C端五肽酰胺部分深深插入螺旋束中。除了受体螺旋1顶部的Arg - 57(未检测到其与配体的潜在相互作用)外,诱变研究确定的其他参与胃泌素识别的氨基酸残基被发现与胃泌素的C端部分相互作用。即使考虑到这种模型系统的强烈局限性,它仍是一个有趣的工具,可用于合理化先前对胃泌素进行的广泛结构 - 功能研究的实验结果,并更精确地描绘受体细胞外表面上假定的配体结合位点。

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