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Global dynamics of nucleosome arrays: influence of variant histone H2A.Z

机译:核小体阵列的全球动力学:变异组蛋白H2A.Z的影响

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Nucleosomal arrays are one of the fundamental levels of chromatin organization. They often occur in the gene promoter areas, thus being important for transcription regulation. Investigating the effect of variant histone H2A.Z over the dynamic structure of single nucleosomes and their arrays is important for understanding the transcription within chromatin. Recently we highlighted the influence of histone variants over the functional dynamics of single nucleosome. The present work further analyzes the higher order structures of the nucleosome arrays (dimer, trimer and tetramer) with regular histones as well as with H2A.Z variant. The analysis reveals that the modeled nucleosome dimer with both histone types exhibits a completely relaxed motion with respect to the linker DNA. The dimer also possesses the symmetric dynamics as of the monomeric nucleosome more pronounced in the dimer of variant histones. The trimer expresses larger amplitude of dynamics either by keeping the central nucleosome as a rigid one or the edged nucleosome as a rigid domain in the global modes. The tetramer expresses a symmetric coupled dynamics between the two non-adjacent nucleosomes, consistent with the collective motion of the trimer in the second slowest mode. Like those of the dimer, the dynamics of the trimer and tetramer are considerably enhanced by the presence of variant histone H2A.Z as follows from the larger fluctuations in the respective conformations.
机译:核糖体阵列是染色质组织的基本水平之一。它们通常发生在基因启动子区域,因此对于转录调控很重要。研究变体组蛋白H2A.Z对单个核小体及其阵列动态结构的影响对于了解染色质内的转录非常重要。最近,我们强调了组蛋白变体对单个核小体功能动力学的影响。本工作进一步分析了具有规则组蛋白以及H2A.Z变体的核小体阵列(二聚体,三聚体和四聚体)的更高阶结构。分析表明,具有两种组蛋白类型的模拟核小体二聚体相对于接头DNA表现出完全松弛的运动。像变体组蛋白的二聚体中更明显的单体核小体一样,二聚体还具有对称动力学。三聚体通过在整体模式下将中央核小体保持为刚性一个或将有核核小体保持为刚性结构域来表达更大的动力学幅度。四聚体在两个不相邻的核小体之间表达对称的耦合动力学,这与三聚体在第二慢模式下的集体运动一致。像二聚体的那些一样,三聚体和四聚体的动力学由于变体组蛋白H2A.Z的存在而大大增强,如下所示,这是由于各自构象的较大波动所致。

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