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对结合樟脑的细胞色素P450cam进行175皮秒分子动力学模拟得到的活性位点运动分析。

Analysis of active site motions from a 175 picosecond molecular dynamics simulation of camphor-bound cytochrome P450cam.

作者信息

Paulsen M D, Bass M B, Ornstein R L

机构信息

Molecular Science Research Center, Pacific Northwest Laboratory, Richland, Washington 99352.

出版信息

J Biomol Struct Dyn. 1991 Oct;9(2):187-203. doi: 10.1080/07391102.1991.10507906.

Abstract

The structure and internal motions of the active site residues of camphor-bound cytochrome P450cam have been evaluated on the basis of a 175 psec molecular dynamics simulation. The active site residues generally show very small deviations away from their starting crystal positions. These residues also generally show much smaller fluctuations than for the enzyme as a whole. Phe 87 is dynamically very unusual and is suggested to play a role in substrate movement into and/or out of the active site. The average distance between the heme iron and atoms C5, C6, and C3 of camphor is 5.3, 6.0, and 7.0 A, respectively. This trend is consistent with the experimentally observed stereospecificity of the hydroxylation reaction. On the basis of distance and angle criteria, both 5-exo and 5-endo hydrogen abstraction are predicted to occur during the hydroxylation reaction; although the 5-exo pathway is expected to be 3-fold more likely.

摘要

基于175皮秒的分子动力学模拟,对结合樟脑的细胞色素P450cam活性位点残基的结构和内部运动进行了评估。活性位点残基通常与其起始晶体位置的偏差非常小。这些残基的波动也通常比整个酶的波动小得多。苯丙氨酸87在动力学上非常特殊,表明其在底物进出活性位点的过程中发挥作用。血红素铁与樟脑的C5、C6和C3原子之间的平均距离分别为5.3埃、6.0埃和7.0埃。这种趋势与实验观察到的羟基化反应的立体特异性一致。基于距离和角度标准,预计在羟基化反应过程中会发生5-外向和5-内向氢提取;尽管预计5-外向途径的可能性是3倍。

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