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Influence of pressure on the slow and fast fractional relaxation dynamics in lysozyme: A simulation study

机译:压力对溶菌酶慢速和快速分数松弛动力学的影响:模拟研究

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The article reports on a molecular dynamics simulation study of the influence of moderate, nondenaturing pressure on the slow and fast internal relaxation dynamics of lysozyme. The model parameters of the fractional Ornstein-Uhlenbeck process are used to quantify the changes. We find that the nonexponential character for diffusive motions on time scales above 10 ps is enhanced and that the diffusion processes are slowed down. The diffusive motions on the subpicosecond time scale appear, in contrast, accelerated, whereas the nonexponential character is not altered by pressure. We attribute these findings to the different natures of slow and fast relaxation processes, which are characterized by structural rearrangements and collisions, respectively. The analyses are facilitated by the use of spatially resolved relaxation rate spectra. (C) 2008 American Institute of Physics.
机译:这篇文章报道了分子动力学模拟研究,研究了中等,非变性压力对溶菌酶缓慢和快速内部弛豫动力学的影响。分数Ornstein-Uhlenbeck过程的模型参数用于量化变化。我们发现,在10 ps以上的时间尺度上,扩散运动的非指数特性得到增强,扩散过程变慢。相比之下,亚皮秒级的扩散运动会加速,而非指数特性不会因压力而改变。我们将这些发现归因于缓慢和快速松弛过程的不同性质,分别以结构重排和碰撞为特征。通过使用空间分辨的弛豫率谱可以促进分析。 (C)2008美国物理研究所。

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