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蛋白质的水合作用。溶剂化牛胰蛋白酶抑制剂的水分子的实验停留时间与理论模型计算的比较。

Hydration of proteins. A comparison of experimental residence times of water molecules solvating the bovine pancreatic trypsin inhibitor with theoretical model calculations.

作者信息

Brunne R M, Liepinsh E, Otting G, Wüthrich K, van Gunsteren W F

机构信息

Laboratorium für Physikalische Chemie, ETH-Zentrum, Zürich, Switzerland.

出版信息

J Mol Biol. 1993 Jun 20;231(4):1040-8. doi: 10.1006/jmbi.1993.1350.

Abstract

A 1 ns trajectory from a molecular dynamics study of 1.4 ns total length was used for a detailed analysis of the residence times of water molecules located near 227 selected bovine pancreatic trypsin inhibitor (BPTI) atoms. The simulation was performed using the GROMOS force field, with apolar hydrogen atoms treated as united atoms, and the SPC/E water model. The system consisted of 568 BPTI atoms and 2371 water molecules. The theoretical results are in good agreement with experimental data available from nuclear magnetic resonance spectroscopy. The residence times of individual water molecules coming near a given BPTI atom, as obtained from the simulation, vary greatly and range between 10 and 500 ps. The effective residence time, calculated using a correlation function technique from the presence of all individual water molecules visiting the hydration shell of a given BPTI atom, never exceeds 200 ps. The average residence time near backbone and side-chain atoms is approximately 39 ps and 24 ps, respectively. The shortest residence times, on average, are found near charged atoms (19 ps), whereas near non-polar and polar side-chain atoms the residence times are 25 ps and 36 ps, respectively. There is no apparent correlation between the residence times of the hydration water molecules of solvent-accessible residues and their location in different regular or non-regular secondary structures.

摘要

从总长度为1.4纳秒的分子动力学研究中提取的1纳秒轨迹,用于详细分析位于227个选定的牛胰蛋白酶抑制剂(BPTI)原子附近的水分子的停留时间。模拟使用GROMOS力场进行,非极性氢原子被视为联合原子,并采用SPC/E水模型。该系统由568个BPTI原子和2371个水分子组成。理论结果与核磁共振光谱的实验数据吻合良好。从模拟中获得的靠近给定BPTI原子的单个水分子的停留时间差异很大,范围在10到500皮秒之间。使用相关函数技术根据访问给定BPTI原子水合壳层的所有单个水分子的存在情况计算出的有效停留时间从未超过200皮秒。靠近主链和侧链原子的平均停留时间分别约为39皮秒和24皮秒。平均而言,在带电原子附近发现的停留时间最短(19皮秒),而在非极性和极性侧链原子附近的停留时间分别为25皮秒和36皮秒。溶剂可及残基的水合水分子的停留时间与其在不同规则或不规则二级结构中的位置之间没有明显的相关性。

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