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Is Protein Folding Sub-Diffusive?

机译:蛋白质折叠亚扩散性吗?

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Protein folding dynamics is often described as diffusion on a free energy surface considered as a function of one or few reaction coordinates. However, a growing number of experiments and models show that, when projected onto a reaction coordinate, protein dynamics is sub-diffusive. This raises the question as to whether the conventionally used diffusive description of the dynamics is adequate. Here, we numerically construct the optimum reaction coordinate for a long equilibrium folding trajectory of a Go model of a -repressor protein. The trajectory projected onto this coordinate exhibits diffusive dynamics, while the dynamics of the same trajectory projected onto a sub-optimal reaction coordinate is sub-diffusive. We show that the higher the (cut-based) free energy profile for the putative reaction coordinate, the more diffusive the dynamics become when projected on this coordinate. The results suggest that whether the projected dynamics is diffusive or sub-diffusive depends on the chosen reaction coordinate. Protein folding can be described as diffusion on the free energy surface as function of the optimum reaction coordinate. And conversely, the conventional reaction coordinates, even though they might be based on physical intuition, are often sub-optimal and, hence, show sub-diffusive dynamics.
机译:蛋白质折叠动力学通常被描述为在自由能表面上的扩散,被认为是一个或几个反应坐标的函数。但是,越来越多的实验和模型表明,当投影到反应坐标上时,蛋白质动力学是亚扩散的。这就提出了一个问题,即常规使用的动力学扩散描述是否足够。在这里,我们在数值上构建了阻遏蛋白Go模型长平衡折叠轨迹的最佳反应坐标。投影到该坐标上的轨迹表现出扩散动力学,而投影到次优反应坐标上的同一轨迹的动力学则是次扩散。我们表明,假定的反应坐标的(基于割的)自由能分布曲线越高,当投影到该坐标上时动力学变得越具有扩散性。结果表明,所预测的动力学是扩散的还是次扩散的取决于所选择的反应坐标。蛋白质折叠可描述为在自由能表面上的扩散,是最佳反应坐标的函数。相反,尽管常规反应坐标可能基于物理直觉,但它们通常不是最佳的,因此显示出次扩散动力学。

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