Rice University, Department of Chemistry, Houston, Texas 77005, USA.
J Chem Phys. 2011 Mar 28;134(12):124116. doi: 10.1063/1.3569857.
We present a multiscale method for the determination of collective reaction coordinates for macromolecular dynamics based on two recently developed mathematical techniques: diffusion map and the determination of local intrinsic dimensionality of large datasets. Our method accounts for the local variation of molecular configuration space, and the resulting global coordinates are correlated with the time scales of the molecular motion. To illustrate the approach, we present results for two model systems: all-atom alanine dipeptide and coarse-grained src homology 3 protein domain. We provide clear physical interpretation for the emerging coordinates and use them to calculate transition rates. The technique is general enough to be applied to any system for which a Boltzmann-sampled set of molecular configurations is available.
我们提出了一种基于两种新发展的数学技术的多尺度方法,用于确定大分子动力学的集体反应坐标:扩散映射和大数据集局部内在维数的确定。我们的方法考虑了分子构象空间的局部变化,并且得到的全局坐标与分子运动的时间尺度相关。为了说明该方法,我们给出了两个模型系统的结果:全原子丙氨酸二肽和粗粒同源 3 蛋白结构域。我们为出现的坐标提供了清晰的物理解释,并使用它们来计算转移率。该技术具有足够的通用性,可以应用于任何可以获得玻尔兹曼抽样分子构象集的系统。