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首页> 外文期刊>The Journal of Chemical Physics >Spatio-temporal hierarchy in the dynamics of a minimalist protein model
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Spatio-temporal hierarchy in the dynamics of a minimalist protein model

机译:极简蛋白质模型动力学中的时空层次

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摘要

A method for time series analysis of molecular dynamics simulation of a protein is presented. In this approach, wavelet analysis and principal component analysis are combined to decompose the spatiotemporal protein dynamics into contributions from a hierarchy of different time and space scales. Unlike the conventional Fourier-based approaches, the time-localized wavelet basis captures the vibrational energy transfers among the collective motions of proteins. As an illustrative vehicle, we have applied our method to a coarse-grained minimalist protein model. During the folding and unfolding transitions of the protein, vibrational energy transfers between the fast and slow time scales were observed among the large-amplitude collective coordinates while the other small-amplitude motions are regarded as thermal noise. Analysis employing a Gaussian-based measure revealed that the time scales of the energy redistribution in the subspace spanned by such large-amplitude collective coordinates are slow compared to the other small-amplitude coordinates. Future prospects of the method are discussed in detail.
机译:提出了一种蛋白质分子动力学模拟的时间序列分析方法。在这种方法中,小波分析和主成分分析相结合,将时空蛋白质动力学分解成来自不同时空尺度的层次结构。与传统的基于傅立叶的方法不同,时间局部小波基础捕获了蛋白质集体运动之间的振动能量转移。作为说明性载体,我们已将我们的方法应用于粗粒度的极简蛋白质模型。在蛋白质的折叠和展开过渡过程中,在大幅度的集体坐标中观察到了快速和慢时尺度之间的振动能量转移,而其他小幅度的运动则被视为热噪声。使用基于高斯的测度的分析表明,与其他小幅度坐标相比,由此类大幅度集合坐标跨越的子空间中能量重新分布的时间尺度要慢。详细讨论了该方法的未来前景。

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