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Structure and dynamics of the yeast SWR1-nucleosome complex

机译:酵母SWR1-核小体复合物的结构和动力学

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The yeast SWR1 complex exchanges histone H2A in nucleosomes with Htz1 (H2A.Z in humans). The cryo-electron microscopy structure of the SWR1 complex bound to a nucleosome at 3.6-angstrom resolution reveals details of the intricate interactions between components of the SWR1 complex and its nucleosome substrate. Interactions between the Swr1 motor domains and the DNA wrap at superhelical location 2 distort the DNA, causing a bulge with concomitant translocation of the DNA by one base pair, coupled to conformational changes of the histone core. Furthermore, partial unwrapping of the DNA from the histone core takes place upon binding of nucleosomes to SWR1 complex. The unwrapping, as monitored by single-molecule data, is stabilized and has its dynamics altered by adenosine triphosphate binding but does not require hydrolysis.
机译:酵母SWR1复合物与Htz1(人类中的H2A.Z)交换核小体中的组蛋白H2A。 SWR1复合物以3.6埃的分辨率结合到核小体上的低温电子显微镜结构揭示了SWR1复合物的成分与其核小体底物之间复杂相互作用的细节。 Swr1马达结构域与DNA包裹在超螺旋位置2之间的相互作用使DNA扭曲,从而导致隆起,伴随DNA通过一个碱基对的易位,并与组蛋白核心的构象变化有关。此外,当核小体与SWR1复合物结合后,DNA从组蛋白核心部分解开。由单分子数据监测的解缠是稳定的,其动力学因三磷酸腺苷的结合而改变,但不需要水解。

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