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关于分子构象对溶剂环境类型的依赖性:环孢菌素A的分子动力学研究

On the dependence of molecular conformation on the type of solvent environment: a molecular dynamics study of cyclosporin A.

作者信息

Lautz J, Kessler H, van Gunsteren W F, Weber H P, Wenger R M

机构信息

Department of Physical Chemistry, University of Groningen, The Netherlands.

出版信息

Biopolymers. 1990 Oct-Nov;29(12-13):1669-87. doi: 10.1002/bip.360291214.

Abstract

The dependence of the conformation of cyclosporin A (CPA), a cyclic undecapeptide with potent immunosuppressive activity, on the type of solvent environment is examined using the computer simulation method of molecular dynamics (MD). Conformational and dynamic properties of CPA in aqueous solution are obtained from MD simulations of a CPA molecule dissolved in a box with water molecules. Corresponding properties of CPA in apolar solution are obtained from MD simulations of CPA in a box with carbontetrachloride. The results of these simulations in H2O and in CCl4 are compared to each other and to those of previous simulations of crystalline CPA and of an isolated CPA molecule. The conformation of the backbone of the cyclic polypeptide is basically independent of the type of solvent. In aqueous solution the beta-pleated sheet is slightly weaker and the gamma-turn is a bit less pronounced than in apolar solution. Side chains may adopt different conformations in different solvents. In apolar solution the hydrophobic side chain of the MeBmt residue is in an extended conformation with its hydroxyl group hydrogen bonded to the backbone carbonyl group. In aqueous solution this hydrophobic side chain folds over the core of the molecule and the mentioned hydrogen bond is broken in favor of hydrogen bonding to water molecules. The conformation obtained from the MD simulation in CCl4 nicely agrees with experimental atom-atom distance data as obtained from nmr experiments in chloroform. In aqueous solution the relaxation of atomic motion tends to be slower than in apolar solution.

摘要

采用分子动力学(MD)计算机模拟方法,研究了具有强免疫抑制活性的环状十一肽环孢菌素A(CPA)的构象对溶剂环境类型的依赖性。通过对溶解在装有水分子的盒子中的CPA分子进行MD模拟,获得了CPA在水溶液中的构象和动力学性质。通过对CPA在装有四氯化碳的盒子中的MD模拟,获得了CPA在非极性溶液中的相应性质。将这些在H2O和CCl4中的模拟结果相互比较,并与之前对结晶CPA和孤立CPA分子的模拟结果进行比较。环状多肽主链的构象基本与溶剂类型无关。在水溶液中,β折叠片层比在非极性溶液中稍弱,γ转角也稍不明显。侧链在不同溶剂中可能呈现不同构象。在非极性溶液中,MeBmt残基的疏水侧链呈伸展构象,其羟基与主链羰基形成氢键。在水溶液中,该疏水侧链折叠在分子核心上,上述氢键断裂,转而与水分子形成氢键。从在CCl4中的MD模拟获得的构象与从氯仿中的核磁共振实验获得的实验原子间距离数据非常吻合。在水溶液中,原子运动的弛豫往往比在非极性溶液中慢。

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