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Description of nonspecific DNA-protein interaction and facilitated diffusion with a dynamical model

机译:非特异性DNA-蛋白质相互作用和动力学模型促进扩散的描述

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We propose a dynamical model for nonspecific DNA-protein interaction, which is based on the "bead-spring" model previously developed by other groups, and investigate its properties using Brownian dynamics simulations. We show that the model successfully reproduces some of the observed properties of real systems and predictions of kinetic models. For example, sampling of the DNA sequence by the protein proceeds via a succession of three-dimensional motion in the solvent, one-dimensional sliding along the sequence, short hops between neighboring sites, and intersegmental transfers. Moreover, facilitated diffusion takes place in a certain range of values of the protein effective charge, that is, the combination of one-dimensional sliding and three-dimensional motion leads to faster DNA sampling than pure three-dimensional motion. At last, the number of base pairs visited during a sliding event is comparable to the values deduced from single-molecule experiments. We also point out and discuss some discrepancies between the predictions of this model and some recent experimental results as well as some hypotheses and predictions of kinetic models.
机译:我们提出了一种非特异性DNA-蛋白质相互作用的动力学模型,该模型基于其他小组先前开发的“珠-弹簧”模型,并使用布朗动力学仿真研究其性质。我们显示该模型成功地重现了一些实际系统的观察特性和动力学模型的预测。例如,蛋白质的DNA序列采样是通过在溶剂中的一系列三维运动,沿序列的一维滑动,相邻位点之间的短跳以及片段间转移进行的。此外,促进扩散发生在蛋白质有效电荷的一定值范围内,即,一维滑动和三维运动的组合导致比纯三维运动更快的DNA采样。最后,在滑动事件期间访问的碱基对的数量与从单分子实验推导的值相当。我们还指出并讨论了该模型的预测与最近的实验结果之间的一些差异,以及动力学模型的一些假设和预测。

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