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天然及底物结合型溶菌酶的分子动力学模拟。平均结构与原子涨落的研究。

Molecular dynamics simulations of native and substrate-bound lysozyme. A study of the average structures and atomic fluctuations.

作者信息

Post C B, Brooks B R, Karplus M, Dobson C M, Artymiuk P J, Cheetham J C, Phillips D C

出版信息

J Mol Biol. 1986 Aug 5;190(3):455-79. doi: 10.1016/0022-2836(86)90015-x.

Abstract

Molecular dynamics simulations of hen egg-white lysozyme in the free and substrate-bound states are reported and the nature of the average structures and atomic fluctuations are analyzed. Crystallographic water molecules of structural importance, as determined by hydrogen-bonding, were included in the simulations. Comparisons are made between the dynamics and the X-ray results for the atomic positions, the main-chain and side-chain dihedral angles, and the hydrogen-bonding geometry. Improvements over earlier simulations in the potential energy function and methodology resulted in stable trajectories with the C alpha co-ordinates within 1.5 A of the starting X-ray structure. Structural features analyzed in the simulations agreed well with the X-ray results except for some surface residues. The Asx chi 2 dihedral distribution and the geometry of hydrogen bonding at reverse turns show differences; possible causes are discussed. The relation between the magnitudes and time-scales of the residue fluctuations and secondary structural features, such as helices beta-sheets and coiled loops, is examined. Significant differences in the residue mobilities between the simulations of the free and substrate-bound states were found in a region of the enzyme that is in direct contact with the substrate and in a region that is distant from the active-site cleft. The dynamic behavior of the structural water molecules is analyzed by examining the correlation between the fluctuations of the water oxygens and the lysozyme heavy-atoms to which they are hydrogen-bonded.

摘要

本文报道了处于游离状态和底物结合状态的鸡蛋清溶菌酶的分子动力学模拟,并分析了平均结构和原子波动的性质。模拟中纳入了通过氢键确定的具有结构重要性的结晶水分子。对原子位置、主链和侧链二面角以及氢键几何结构的动力学与X射线结果进行了比较。势能函数和方法学方面相对于早期模拟的改进,使得Cα坐标在起始X射线结构的1.5埃范围内的轨迹稳定。模拟中分析的结构特征与X射线结果吻合良好,但一些表面残基除外。Asx χ2二面角分布和反向转角处的氢键几何结构存在差异;对可能的原因进行了讨论。研究了残基波动的幅度和时间尺度与二级结构特征(如螺旋、β折叠和卷曲环)之间的关系。在酶中与底物直接接触的区域以及远离活性位点裂隙的区域,发现游离状态和底物结合状态模拟之间的残基迁移率存在显著差异。通过检查水分子氧原子与它们氢键结合的溶菌酶重原子波动之间的相关性,分析了结构水分子的动态行为。

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