接触映射空间中的有效动力学

Michele Vendruscolo , Eytan Domany
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引用次数: 38

摘要

背景:在蛋白质折叠预测中有两个重要的问题:如何产生合理的构象,以及如何选择能量函数来识别天然状态。接触图是蛋白质结构的简单表示,为解决这两个问题提供了一个有希望的框架。结果:在这项工作中,我们发展了接触映射空间中的蒙特卡罗动力学。该过程分为四个步骤:非局部动力学,其中执行大规模的“集群”移动(集群与二级结构元素近似对应);局部动力学,其中二级结构位置优化;重建,其中接触图的物理性质被恢复;和细化,其中包括在现实空间中进一步的蒙特卡罗能量最小化。我们证明了这种动态过程在产生不相关的低能态方面是有效的。结论:本文介绍的程序非常有效地生成了具有代表性的构象集合。我们能够证明,现有的成对接触能参数集不适合在该系综中挑选出固有状态。在蛋白质折叠中剩下的突出问题是找到一个能量函数,可以区分原生状态和诱饵。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Efficient dynamics in the space of contact maps

Background: Two problems are of major importance in protein fold prediction: how to generate plausible conformations, and how to choose an energy function to identify the native state. Contact maps are a simple representation of protein structure and offer a promising framework to address these two issues.

Results: In this work we develop Monte Carlo dynamics in contact map space. The procedure is divided into four steps: non-local dynamics, in which large-scale “cluster” moves are performed (clusters are in approximate correspondence with secondary structure elements); local dynamics, in which secondary structure location is optimized; reconstruction, in which the physicality of the contact map is restored; and refinement, which consists of a further Monte Carlo energy minimization in real space. We demonstrate that such a dynamical procedure is effective in producing uncorrelated low-energy states.

Conclusions:The procedure introduced in this paper very effectively generates a representative ensemble of conformations. We are able to show that existing sets of pairwise contact energy parameters are not suitable to single out the native state within this ensemble. The remaining outstanding issue in protein folding is to find an energy function that can discriminate the native state from decoys.

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