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核小体 DNA 的非对称呼吸运动及组蛋白尾部的作用。

Asymmetric breathing motions of nucleosomal DNA and the role of histone tails.

机构信息

Department of Chemistry, College of Staten Island, The City University of New York, 2800 Victory Boulevard, Staten Island, New York 10314, USA.

出版信息

J Chem Phys. 2017 Aug 14;147(6):065101. doi: 10.1063/1.4997573.

Abstract

The most important packing unit of DNA in the eukaryotic cell is the nucleosome. It undergoes large-scale structural re-arrangements during different cell cycles. For example, the disassembly of the nucleosome is one of the key steps for DNA replication, whereas reassembly occurs after replication. Thus, conformational dynamics of the nucleosome is crucial for different DNA metabolic processes. We perform three different sets of atomistic molecular dynamics simulations of the nucleosome core particle at varying degrees of salt conditions for a total of 0.7 μs simulation time. We find that the conformational dynamics of the nucleosomal DNA tails are oppositely correlated from each other during the initial breathing motions. Furthermore, the strength of the interaction of the nucleosomal DNA tail with the neighboring H2A histone tail modulates the conformational state of the nucleosomal DNA tail. With increasing salt concentration, the degree of asymmetry in the conformation of the nucleosomal DNA tails decreases as both tails tend to unwrap. This direct correlation between the asymmetric breathing motions of the DNA tails and the H2A histone tails, and its decrease at higher salt concentrations, may play a significant role in the molecular pathway of unwrapping.

摘要

真核细胞中 DNA 的最重要包装单元是核小体。它在不同的细胞周期中经历大规模的结构重排。例如,核小体的解组装是 DNA 复制的关键步骤之一,而复制后会发生组装。因此,核小体的构象动力学对于不同的 DNA 代谢过程至关重要。我们在不同盐度条件下对核小体核心颗粒进行了三组不同的原子分子动力学模拟,总模拟时间为 0.7 μs。我们发现,在初始呼吸运动中,核小体 DNA 尾部的构象动力学彼此呈相反相关。此外,核小体 DNA 尾部与相邻 H2A 组蛋白尾部的相互作用强度调节核小体 DNA 尾部的构象状态。随着盐浓度的增加,核小体 DNA 尾部构象的不对称程度降低,因为两条尾部都倾向于解缠绕。DNA 尾部和 H2A 组蛋白尾部的不对称呼吸运动之间的这种直接相关性及其在较高盐浓度下的降低,可能在解缠绕的分子途径中发挥重要作用。

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