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The Contribution of Transient Counterion Imbalances to DNA Bending Fluctuations

机译:瞬时抗衡离子失衡对DNA弯曲波动的贡献

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摘要

A two-sided model for DNA is employed to analyze fluctuations of the spatial distribution of condensed counterions and the effect of these fluctuations on transient bending. We analyze two classes of fluctuations. In the first, the number of condensed counterions on one side of the DNA remains at its average value, while on the other side, counterions are lost to bulk solution or gained from it. The second class of fluctuations is characterized by movement of some counterions from one side of the DNA to the other. The root-mean-square fluctuation for each class is calculated from counterion condensation theory. The amplitude of the root-mean-square fluctuation depends on the ionic strength as well as the length of the segment considered and is of the order 5–10%. Both classes of fluctuation result in transient bends toward the side of greater counterion density. The bending amplitudes are ∼15% of the total root-mean-square bends associated with the persistence length of DNA. We are thus led to suggest that asymmetric fluctuations of counterion density contribute modestly but significantly toward the aggregate of thermalized solvent fluctuations that cause bending deformations of DNA free in solution. The calculations support the idea that counterions may exert some modulating influence on the fine structure of DNA.
机译:DNA的双面模型用于分析缩合抗衡离子空间分布的波动以及这些波动对瞬时弯曲的影响。我们分析了两类波动。首先,DNA一侧的缩合抗衡离子数量保持其平均值,而另一侧,抗衡离子丢失或从本体溶液中获得。第二类波动的特征是一些抗衡离子从DNA的一侧移动到另一侧。每个类别的均方根波动是根据抗衡离子凝聚理论计算得出的。均方根波动的幅度取决于离子强度以及所考虑段的长度,约为5-10%。两种类型的波动都导致向较大抗衡离子密度一侧的瞬时弯曲。弯曲幅度约为与DNA持久长度相关的总均方根弯曲的15%。因此,我们认为抗衡离子密度的不对称波动适度但对导致溶剂中游离DNA发生弯曲变形的热化溶剂波动的总和贡献很大。计算结果支持抗衡离子可能对DNA的精细结构产生一定的调节作用。

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