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[甲硫氨酸5]-脑啡肽的构象分析:溶剂化与电离因素

Conformational analysis of [Met5]-enkephalin: solvation and ionization considerations.

作者信息

Carlacci L

机构信息

Department of Chemistry, University of South Florida, Tampa 33620-5250, USA.

出版信息

J Comput Aided Mol Des. 1998 Mar;12(2):195-213. doi: 10.1023/a:1007993118927.

Abstract

[Met5]-Enkephalin has the sequence Tyr-Gly-Gly-Phe-Met. Only the extended conformation of the peptide has been observed by X-ray crystallography. Nuclear magnetic resonance spectroscopy supports the presence of a turn at Gly 3 and Phe 4 in dimethyl sulfoxide. In this study, the peptide conformational states and thermodynamic properties are understood in terms of ionization state and solvent environment. In the calculation, final conformations obtained from multiple independent Monte Carlo simulated annealing conformational searches are starting points for molecular dynamics simulations. In an aqueous environment given by the use of solvation free energy and the zwitterionic state, dominant structural motifs computed are G-P Type II' bend, G-G Type II' bend, and G-G Type I' bend motifs, in order of increasing free energy. In the calculation of the peptide with neutral N- and C-termini and solvation free energy, the extended conformer dominates (by at least a factor of 2.5), and the conformation of another low free energy conformer superimposes well on the pharmacophoric groups of morphine. Neutralization of charge and solvation induce and stabilize the extended conformation, respectively. A mechanism of inter-conversion between the extended conformer and three bent conformers is supported by phi/psi-scatter plots, and by the conformer relative free energies. An estimate of the entropy change of receptor unbinding is 8.3 cal K-1 mol-1, which gives rise to a -2.5 kcal/mol entropy contribution to the free energy of unbinding at 25 degrees C. The conformational analysis methodology described here should be useful in studies on short peptides and flexible protein surface loops that have important biological implications.

摘要

[甲硫氨酸5]-脑啡肽的序列为Tyr-Gly-Gly-Phe-Met。通过X射线晶体学仅观察到该肽的伸展构象。核磁共振光谱证实了在二甲基亚砜中甘氨酸3和苯丙氨酸4处存在一个转角。在本研究中,根据电离状态和溶剂环境来理解肽的构象状态和热力学性质。在计算中,从多个独立的蒙特卡罗模拟退火构象搜索获得的最终构象是分子动力学模拟的起点。在使用溶剂化自由能和两性离子状态给出的水性环境中,计算得到的主要结构基序依次为G-P II'型转角、G-G II'型转角和G-G I'型转角基序,自由能依次增加。在计算具有中性N端和C端以及溶剂化自由能的肽时,伸展构象异构体占主导(至少相差2.5倍),另一种低自由能构象异构体的构象与吗啡的药效基团很好地重叠。电荷中和和溶剂化分别诱导并稳定伸展构象。伸展构象异构体与三种弯曲构象异构体之间的相互转化机制得到了φ/ψ散点图和构象异构体相对自由能的支持。受体解离的熵变估计为8.3 cal K-1 mol-1,这在25℃时对解离自由能产生-2.5 kcal/mol的熵贡献。这里描述的构象分析方法在研究具有重要生物学意义的短肽和柔性蛋白质表面环时应该是有用的。

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