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延伸和动态连接组蛋白-DNA 相互作用控制染色质压缩。

Extended and dynamic linker histone-DNA Interactions control chromatosome compaction.

机构信息

Faculty of Biology, Technion-Israel Institute of Technology, Haifa 32000, Israel.

Faculty of Biology, Technion-Israel Institute of Technology, Haifa 32000, Israel; Faculty of Physics, Technion-Israel Institute of Technology, Haifa 32000, Israel.

出版信息

Mol Cell. 2021 Aug 19;81(16):3410-3421.e4. doi: 10.1016/j.molcel.2021.06.006. Epub 2021 Jun 29.

Abstract

Chromatosomes play a fundamental role in chromatin regulation, but a detailed understanding of their structure is lacking, partially due to their complex dynamics. Using single-molecule DNA unzipping with optical tweezers, we reveal that linker histone interactions with DNA are remarkably extended, with the C-terminal domain binding both DNA linkers as far as approximately ±140 bp from the dyad. In addition to a symmetrical compaction of the nucleosome core governed by globular domain contacts at the dyad, the C-terminal domain compacts the nucleosome's entry and exit. These interactions are dynamic, exhibit rapid binding and dissociation, are sensitive to phosphorylation of a specific residue, and are crucial to determining the symmetry of the chromatosome's core. Extensive unzipping of the linker DNA, which mimics its invasion by motor proteins, shifts H1 into an asymmetric, off-dyad configuration and triggers nucleosome decompaction, highlighting the plasticity of the chromatosome structure and its potential regulatory role.

摘要

染色质小体在染色质调控中起着至关重要的作用,但由于其复杂的动力学特性,我们对其结构的了解还很有限。我们利用单分子 DNA 解链的光学镊子技术,揭示了连接组蛋白与 DNA 的相互作用非常延伸,C 端结构域与 DNA 连接子结合,距离二分体最远可达约 ±140bp。除了由二分体处的球形结构域接触控制的核小体核心的对称压缩外,C 端结构域还压缩核小体的进入和退出。这些相互作用是动态的,表现出快速的结合和解离,对特定残基的磷酸化敏感,对于确定染色质小体核心的对称性至关重要。连接 DNA 的广泛解链,模拟了其被马达蛋白的入侵,将 H1 移到非二分体的不对称构象,并触发核小体解压缩,突出了染色质小体结构的可塑性及其潜在的调节作用。

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