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蛋白质二级结构运动的分子动力学研究:应用于肌红蛋白。

Molecular dynamics study of secondary structure motions in proteins: application to myohemerythrin.

作者信息

Rojewska D, Elber R

机构信息

Department of Chemistry M/C 111, University of Illinois, Chicago 60680.

出版信息

Proteins. 1990;7(3):265-79. doi: 10.1002/prot.340070308.

Abstract

The concept of secondary structure motions is examined in a molecular dynamics simulation of the protein myohemerythrin. We extracted from the simulation a corresponding trajectory of helices and demonstrated that the fluctuations of the protein are dominated by a rigid shift of these secondary structure elements. The relative motions of the helices are irregular, with no clear periodicity. They are bounded by approximately 2 A for the center of mass motions and by 20 degrees for the relative orientations. The potential of mean force for the interactions of the helices was calculated, and the correlations between the different extended motions were investigated. It is shown that the one-dimensional mean force potentials are close to quadratic for most of the helices coordinates. The anharmonicity is reflected by changes in the direction of the normal modes as a function of the energy and by the existence of multiple free energy minima for the helices packing. The multiple conformations are associated with a single type of secondary structure coordinate: the angle that describes the relative orientation of the helices in a plane perpendicular to the line connecting their center of mass.

摘要

在肌红蛋白的分子动力学模拟中研究了二级结构运动的概念。我们从模拟中提取了相应的螺旋轨迹,并证明蛋白质的波动主要由这些二级结构元件的刚性位移主导。螺旋的相对运动是不规则的,没有明显的周期性。它们的质心运动范围约为2埃,相对取向范围为20度。计算了螺旋相互作用的平均力势,并研究了不同伸展运动之间的相关性。结果表明,对于大多数螺旋坐标,一维平均力势接近二次函数。非谐性通过正常模式方向随能量的变化以及螺旋堆积存在多个自由能极小值来反映。多种构象与单一类型的二级结构坐标相关:该角度描述了螺旋在垂直于连接其质心的直线的平面中的相对取向。

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