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Determining Protein-Induced DNA Bending in Force-Extension Experiments: Theoretical Analysis

机译:在力扩展实验中确定蛋白质诱导的DNA弯曲:理论分析

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摘要

Computer simulations were used to investigate the possibility of determining protein-induced DNA bend angles by measuring the extension of a single DNA molecule. Analysis of the equilibrium sets of DNA conformations showed that shortening of DNA extension by a single protein-induced DNA bend can be as large as 35 nm. The shortening has a maximum value at the extending force of ∼0.1 pN. At this force, the DNA extension experiences very large fluctuations that dramatically complicate the measurement. Using Brownian dynamics simulation of a DNA molecule extended by force, we were able to estimate the observation time needed to obtain the desired accuracy of the extension measurement. Also, the simulation revealed large fluctuations of the force, acting on the attached magnetic bead from the stretched DNA molecule.
机译:使用计算机模拟来研究通过测量单个DNA分子的延伸来确定蛋白质诱导的DNA弯曲角的可能性。对DNA构象的平衡集的分析表明,由单个蛋白质诱导的DNA弯曲引起的DNA延伸缩短可能高达35 nm。在〜0.1pN的延伸力下,起酥油具有最大值。在这种作用下,DNA延伸会经历非常大的波动,这会使测量变得非常复杂。使用通过力扩展的DNA分子的布朗动力学模拟,我们能够估计获得所需的扩展测量精度所需的观察时间。同样,模拟显示作用力很大的波动,作用在拉伸的DNA分子附着的磁珠上。

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