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通过分子动力学模拟对开放型和封闭型细胞色素P450BM-3的口部运动进行的显著差异研究。

Dramatic differences in the motions of the mouth of open and closed cytochrome P450BM-3 by molecular dynamics simulations.

作者信息

Paulsen M D, Ornstein R L

机构信息

Environmental Molecular Sciences Laboratory, Pacific Northwest Laboratory, Richland, Washington 99352, USA.

出版信息

Proteins. 1995 Mar;21(3):237-43. doi: 10.1002/prot.340210306.

Abstract

Molecular dynamics trajectories were calculated separately for each of the two molecules in the asymmetric unit of the crystal structure of the hemoprotein domain of cytochrome P450BM-3. Each simulation was 200 ps in length and included a 10 A layer of explicit solvent. The simulated time-average structure of each P450BM-3 molecule is closer to its crystal structure than the two molecular dynamics time-averaged structures are to each other. In the crystal structure, molecule 2 has a more accessible substrate binding pocket than molecule 1, and this difference is maintained throughout the simulations presented here. In particular, the substrate docking regions of molecule 1 and molecule 2 diverge in the solution state simulations. The mouth of the substrate binding pocket is significantly more mobile in the simulation of molecule 2 than in the simulation of molecule 1. For molecule 1, the width of the mouth is only slightly larger than its X-ray value of 8.7 A and undergoes fluctuations of about 1 A. However, in molecule 2, the mouth of the substrate binding pocket is dramatically more open in the time-average molecular dynamics structure (14.7 A) than in the X-ray structure (10.9 A). Furthermore, this region of the protein undergoes large amplitude motions during the trajectory that are not seen in the trajectory of molecule 1, repeatedly opening and closing up to 7 A. Presumably, the binding of different substrates will induce the mouth region to adopt different conformations from within the wide range of structures that are accessible.

摘要

针对细胞色素P450BM - 3血红素蛋白结构域晶体结构不对称单元中的两个分子,分别计算了分子动力学轨迹。每次模拟时长为200皮秒,并包含一层10埃厚的显式溶剂。每个P450BM - 3分子的模拟时间平均结构与其晶体结构的相似度,高于两个分子动力学时间平均结构之间的相似度。在晶体结构中,分子2的底物结合口袋比分子1更容易接近,并且在此处展示的整个模拟过程中这种差异一直存在。特别是,在溶液状态模拟中,分子1和分子2的底物对接区域出现了分歧。分子2模拟中的底物结合口袋口比分子1模拟中的明显更具流动性。对于分子1,口袋口的宽度仅略大于其8.7埃的X射线值,且波动约为1埃。然而,在分子2中,底物结合口袋口在时间平均分子动力学结构(14.7埃)中比在X射线结构(10.9埃)中明显更开放。此外,该蛋白质区域在轨迹中经历了分子1轨迹中未出现的大幅度运动,反复开合达7埃。据推测,不同底物的结合将诱导口袋口区域在可及的广泛结构范围内采用不同的构象。

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