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Structure and Dynamics in the Nucleosome Revealed by Solid-State NMR

机译:固态NMR揭示的核小体中的结构和动态

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摘要

Eukaryotic chromatin structure and dynamics play key roles in genomic regulation. In the current study, the secondary structure and intramolecular dynamics of human histone H4 (hH4) in the nucleosome core particle (NCP) and in a nucleosome array are determined by solid-state NMR (SSNMR). Secondary structure elements are successfully localized in the hH4 in the NCP precipitated with Mg2+. In particular, dynamics on nanosecond to microsecond and microsecond to millisecond timescales are elucidated, revealing diverse internal motions in the hH4 protein. Relatively higher flexibility is observed for residues participating in the regulation of chromatin mobility and DNA accessibility. Furthermore, our study reveals that hH4 in the nucleosome array adopts the same structure and show similar internal dynamics as that in the NCP assembly while exhibiting relatively restricted motions in several regions consisting of residues in the N-terminus, Loop 1, and the 3 helix region.
机译:真核染色质结构与动力学在基因组调节中发挥关键作用。 在目前的研究中,通过固态NMR(SSNMR)确定核小体核心颗粒(NCP)和核小体阵列中人组蛋白H4(HH4)的二次结构和分子内动态。 二次结构元素在用Mg2 +沉淀的NCP中成功定位在HH4中。 特别地,阐明了纳秒至微秒至微秒至毫秒时间的动力学,揭示了HH4蛋白中不同的内部运动。 观察到参与染色质迁移率和DNA可访问性的残留物的残基观察到相对较高的灵活性。 此外,我们的研究表明,核小族阵列中的HH4采用相同的结构,并显示与NCP组件中的类似的内部动态,同时在若干区域中表现出相对受限制的动作,包括在N-末端,循环1和3螺旋中由残留物组成的几个区域中的运动 地区。

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