Suppr超能文献

蛋白质中集体运动的时间序列分析。

Time series analysis of collective motions in proteins.

作者信息

Alakent Burak, Doruker Pemra, Camurdan Mehmet C

机构信息

Department of Chemical Engineering and Polymer Research Center, Boğaziçi University, Bebek, Istanbul 34342, Turkey.

出版信息

J Chem Phys. 2004 Jan 8;120(2):1072-88. doi: 10.1063/1.1630793.

Abstract

The dynamics of alpha-amylase inhibitor tendamistat around its native state is investigated using time series analysis of the principal components of the C(alpha) atomic displacements obtained from molecular dynamics trajectories. Collective motion along a principal component is modeled as a homogeneous nonstationary process, which is the result of the damped oscillations in local minima superimposed on a random walk. The motion in local minima is described by a stationary autoregressive moving average model, consisting of the frequency, damping factor, moving average parameters and random shock terms. Frequencies for the first 50 principal components are found to be in the 3-25 cm(-1) range, which are well correlated with the principal component indices and also with atomistic normal mode analysis results. Damping factors, though their correlation is less pronounced, decrease as principal component indices increase, indicating that low frequency motions are less affected by friction. The existence of a positive moving average parameter indicates that the stochastic force term is likely to disturb the mode in opposite directions for two successive sampling times, showing the modes tendency to stay close to minimum. All these four parameters affect the mean square fluctuations of a principal mode within a single minimum. The inter-minima transitions are described by a random walk model, which is driven by a random shock term considerably smaller than that for the intra-minimum motion. The principal modes are classified into three subspaces based on their dynamics: essential, semiconstrained, and constrained, at least in partial consistency with previous studies. The Gaussian-type distributions of the intermediate modes, called "semiconstrained" modes, are explained by asserting that this random walk behavior is not completely free but between energy barriers.

摘要

利用从分子动力学轨迹获得的Cα原子位移主成分的时间序列分析,研究了α-淀粉酶抑制剂tendamistat在其天然状态附近的动力学。沿主成分的集体运动被建模为一个齐次非平稳过程,它是叠加在随机游走之上的局部极小值中的阻尼振荡的结果。局部极小值中的运动由一个平稳自回归移动平均模型描述,该模型由频率、阻尼因子、移动平均参数和随机冲击项组成。发现前50个主成分的频率在3-25 cm-1范围内,与主成分指标以及原子正常模式分析结果具有良好的相关性。阻尼因子虽然相关性不太明显,但随着主成分指标的增加而减小,表明低频运动受摩擦的影响较小。正移动平均参数的存在表明,随机力项可能在两个连续采样时间以相反方向干扰模式,显示出模式倾向于保持接近最小值。所有这四个参数都会影响单个极小值内主模式的均方波动。极小值间的跃迁由一个随机游走模型描述,该模型由一个比极小值内运动的随机冲击项小得多的随机冲击项驱动。主模式至少部分与先前的研究一致,根据其动力学被分为三个子空间:基本模式、半约束模式和约束模式。中间模式,即所谓的“半约束”模式的高斯型分布,是通过断言这种随机游走行为不是完全自由的,而是在能量障碍之间来解释的。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验