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用于多肽模拟的高效蒙特卡罗试验移动

Efficient Monte Carlo trial moves for polypeptide simulations.

作者信息

Betancourt Marcos R

机构信息

Department of Physics, Indiana University Purdue University Indianapolis, Indianapolis, Indiana 46202, USA.

出版信息

J Chem Phys. 2005 Nov 1;123(17):174905. doi: 10.1063/1.2102896.

Abstract

A new move set for the Monte Carlo simulations of polypeptide chains is introduced. It consists of a rigid rotation along the (C(alpha)) ends of an arbitrary long segment of the backbone in such a way that the atoms outside this segment remain fixed. This fixed end move, or FEM, alters only the backbone dihedral angles phi and psi and the C(alpha) bond angles of the segment ends. Rotations are restricted to those who keep the alpha bond angles within their maximum natural range of approximately +/-10 degrees. The equations for the angular intervals (tau) of the allowed rigid rotations and the equations required for satisfying the detailed balance condition are presented in detail. One appealing property of the FEM is that the required number of calculations is minimal, as it is evident from the simplicity of the equations. In addition, the moving backbone atoms undergo considerable but limited displacements of up to 3 A. These properties, combined with the small number of backbone angles changed, lead to high acceptance rates for the new conformations and make the algorithm very efficient for sampling the conformational space. The FEMs, combined with pivot moves, are used in a test to fold a group of coarse-grained proteins with lengths of up to 200 residues.

摘要

介绍了一种用于多肽链蒙特卡罗模拟的新移动集。它包括沿着主链任意长片段的(Cα)末端进行刚性旋转,使得该片段之外的原子保持固定。这种固定端移动(FEM)仅改变该片段末端的主链二面角φ和ψ以及Cα键角。旋转被限制在那些使α键角保持在大约±10度的最大自然范围内的旋转。详细给出了允许的刚性旋转的角间隔(τ)的方程以及满足细致平衡条件所需的方程。FEM的一个吸引人的特性是所需的计算量最小,这从方程的简单性中很明显。此外,移动的主链原子会经历高达3 Å的相当大但有限的位移。这些特性,再加上改变的主链角度数量较少,导致新构象的接受率很高,并使该算法在构象空间采样方面非常有效。FEM与枢轴移动相结合,用于测试折叠一组长度达200个残基的粗粒度蛋白质。

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