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Evaluation of Unrestrained Replica-Exchange Simulations Using Dynamic Walkers in Temperature Space for Protein Structure Refinement

机译:使用动态沃克在温度空间中进行无限制的复制-交换模拟以评估蛋白质结构。

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摘要

A central problem of computational structural biology is the refinement of modeled protein structures taken from either comparative modeling or knowledge-based methods. Simulations are commonly used to achieve higher resolution of the structures at the all-atom level, yet methodologies that consistently yield accurate results remain elusive. In this work, we provide an assessment of an adaptive temperature-based replica exchange simulation method where the temperature clients dynamically walk in temperature space to enrich their population and exchanges near steep energetic barriers. This approach is compared to earlier work of applying the conventional method of static temperature clients to refine a dataset of conformational decoys. Our results show that, while an adaptive method has many theoretical advantages over a static distribution of client temperatures, only limited improvement was gained from this strategy in excursions of the downhill refinement regime leading to an increase in the fraction of native contacts. To illustrate the sampling differences between the two simulation methods, energy landscapes are presented along with their temperature client profiles.
机译:计算结构生物学的中心问题是从比较建模或基于知识的方法中获取建模的蛋白质结构的改进。通常使用模拟来在全原子水平上实现更高的结构分辨率,但是始终产生准确结果的方法仍然难以捉摸。在这项工作中,我们提供了一种基于温度的自适应副本交换模拟方法的评估,其中温度客户端在温度空间中动态行走以丰富其种群并在陡峭的高能壁垒附近进行交换。将该方法与应用常规静态温度客户端方法以精炼构象诱饵数据集的早期工作进行了比较。我们的结果表明,尽管自适应方法相对于客户端温度的静态分布具有许多理论优势,但在下坡细化方案的偏移中,该策略仅获得了有限的改进,从而导致本地联系的比例增加。为了说明这两种模拟方法之间的采样差异,提出了能源格局及其温度客户概况。

著录项

  • 期刊名称 other
  • 作者

    Mark A. Olson; Michael S. Lee;

  • 作者单位
  • 年(卷),期 -1(9),5
  • 年度 -1
  • 页码 e96638
  • 总页数 9
  • 原文格式 PDF
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