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Chemical Theory and Computation Special Feature: Reaction coordinates and rates from transition paths

机译:化学理论与计算专题:过渡路径的反应坐标和速率

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摘要

The molecular mechanism of a reaction in solution is reflected in its transition-state ensemble and transition paths. We use a Bayesian formula relating the equilibrium and transition-path ensembles to identify transition states, rank reaction coordinates, and estimate rate coefficients. We also introduce a variational procedure to optimize reaction coordinates. The theory is illustrated with applications to protein folding and the dipole reorientation of an ordered water chain inside a carbon nanotube. To describe the folding of a simple model of a three-helix bundle protein, we variationally optimize the weights of a projection onto the matrix of native and nonnative amino acid contacts. The resulting one-dimensional reaction coordinate captures the folding transition state, with formation and packing of helix 2 and 3 constituting the bottleneck for folding.
机译:溶液中反应的分子机理反映在其过渡态整体和过渡路径中。我们使用与平衡和过渡路径合奏相关的贝叶斯公式来识别过渡状态,对反应坐标进行排序并估算速率系数。我们还介绍了一种变分程序来优化反应坐标。将该理论应用于蛋白质折叠和碳纳米管内部有序水链的偶极重取向进行了说明。为了描述三螺旋束蛋白的简单模型的折叠,我们以可变方式优化了天然和非天然氨基酸接触基质上的投影权重。所得的一维反应坐标捕获了折叠的过渡状态,其中螺旋2和3的形成和堆积构成了折叠的瓶颈。

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