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Chromatin Ionic Atmosphere Analyzed by a Mesoscale Electrostatic Approach

机译:中尺度静电方法分析的染色质离子气氛

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摘要

Characterizing the ionic distribution around chromatin is important for understanding the electrostatic forces governing chromatin structure and function. Here we develop an electrostatic model to handle multivalent ions and compute the ionic distribution around a mesoscale chromatin model as a function of conformation, number of nucleosome cores, and ionic strength and species using Poisson-Boltzmann theory. This approach enables us to visualize and measure the complex patterns of counterion condensation around chromatin by examining ionic densities, free energies, shielding charges, and correlations of shielding charges around the nucleosome core and various oligonucleosome conformations. We show that: counterions, especially divalent cations, predominantly condense around the nucleosomal and linker DNA, unburied regions of histone tails, and exposed chromatin surfaces; ionic screening is sensitively influenced by local and global conformations, with a wide ranging net nucleosome core screening charge (56–100e); and screening charge correlations reveal conformational flexibility and interactions among chromatin subunits, especially between the histone tails and parental nucleosome cores. These results provide complementary and detailed views of ionic effects on chromatin structure for modest computational resources. The electrostatic model developed here is applicable to other coarse-grained macromolecular complexes.
机译:表征染色质周围的离子分布对于理解控制染色质结构和功能的静电力很重要。在这里,我们开发了一个静电模型来处理多价离子,并使用泊松-玻耳兹曼理论,根据构象,核小体核心数以及离子强度和种类来计算中尺度染色质模型周围的离子分布。这种方法使我们能够通过检查离子密度,自由能,屏蔽电荷以及核小体核心周围的屏蔽电荷与各种寡核小体构象的相关性,来可视化并测量染色质周围反离子缩合的复杂模式。我们显示:抗衡离子,尤其是二价阳离子,主要在核小体和接头DNA,组蛋白尾巴的未埋藏区域和染色质表面暴露附近凝结;离子筛选受局部和全局构象的敏感影响,核小体核心净筛选电荷范围广泛(56-100e);筛选电荷的相关性揭示了染色质亚基之间,尤其是组蛋白尾巴与亲本核小体核心之间的构象柔性和相互作用。这些结果为适度的计算资源提供了离子对染色质结构的影响的补充和详细视图。此处开发的静电模型适用于其他粗粒大分子复合物。

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