Wriggers Willy, Stafford Kate A, Shan Yibing, Piana Stefano, Maragakis Paul, Lindorff-Larsen Kresten, Miller Patrick J, Gullingsrud Justin, Rendleman Charles A, Eastwood Michael P, Dror Ron O, Shaw David E
D. E. Shaw Research, New York, New York 10036.
J Chem Theory Comput. 2009 Oct 13;5(10):2595-605. doi: 10.1021/ct900229u.
Events of scientific interest in molecular dynamics (MD) simulations, including conformational changes, folding transitions, and translocations of ligands and reaction products, often correspond to high-level structural rearrangements that alter contacts between molecules or among different parts of a molecule. Due to advances in computer architecture and software, MD trajectories representing such structure-changing events have become easier to generate, but the length of these trajectories poses a challenge to scientific interpretation and analysis. In this paper, we present automated methods for the detection of potentially important structure-changing events in long MD trajectories. In contrast with traditional tools for the analysis of such trajectories, our methods provide a detailed report of broken and formed contacts that aids in the identification of specific time-dependent side-chain interactions. Our approach employs a coarse-grained representation of amino acid side chains, a contact metric based on higher order generalizations of Delaunay tetrahedralization, techniques for detecting significant shifts in the resulting contact time series, and a new kernel-based measure of contact alteration activity. The analysis methods we describe are incorporated in a newly developed package, called TimeScapes, which is freely available and compatible with trajectories generated by a variety of popular MD programs. Tests based on actual microsecond time scale simulations demonstrate that the package can be used to efficiently detect and characterize important conformational changes in realistic protein systems.
分子动力学(MD)模拟中具有科学意义的事件,包括构象变化、折叠转变以及配体和反应产物的移位,通常对应于改变分子间或分子不同部分之间接触的高级结构重排。由于计算机架构和软件的进步,代表此类结构变化事件的MD轨迹变得更容易生成,但这些轨迹的长度对科学解释和分析构成了挑战。在本文中,我们提出了用于检测长MD轨迹中潜在重要结构变化事件的自动化方法。与分析此类轨迹的传统工具不同,我们的方法提供了断裂和形成接触的详细报告,有助于识别特定的时间依赖性侧链相互作用。我们的方法采用氨基酸侧链的粗粒度表示、基于德劳内四面体化高阶泛化的接触度量、检测所得接触时间序列中显著变化的技术,以及一种新的基于核的接触改变活性度量。我们描述的分析方法被整合到一个新开发的软件包TimeScapes中,该软件包可免费获取且与各种流行MD程序生成的轨迹兼容。基于实际微秒时间尺度模拟的测试表明,该软件包可用于有效检测和表征现实蛋白质系统中的重要构象变化。