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H2B 泛素化核小体的固有稳定性及其组蛋白伴侣 NAP1 在体外的组装/拆卸。

The intrinsic stability of H2B-ubiquitylated nucleosomes and their in vitro assembly/disassembly by histone chaperone NAP1.

机构信息

N.K. Koltsov Institute of Developmental Biology, Russian Academy of Sciences, Vavilova str. 26, Moscow, 119334, Russia..

出版信息

Biochim Biophys Acta Gen Subj. 2020 Mar;1864(3):129497. doi: 10.1016/j.bbagen.2019.129497. Epub 2019 Nov 27.

Abstract

BACKGROUND

Apart the gene-regulatory functions as docking sites for histone 'readers', some histone modifications could directly affect nucleosome structure. The H2BK34-ubiquitylation deposited by MOF-MSL complex, increases nucleosome dynamics in vitro and promotes donation of one H2A/H2B dimer to histone acceptors.

METHODS

We evaluated temperature-depended stability of H2BK34-ubiquitylated nucleosomes under 'physiological' ionic conditions in the presence or absence of histone acceptor, and examined assembly and disassembly of ubiquitylated nucleosomes in vitro by recombinant mouse NAP1.

RESULTS

H2BK34ub modification is sufficient to promote selective eviction of only one H2A/H2B dimer independently of histone-binding agents. Despite the robust H2A/H2B dimer-displacement effect of mNAP1 with the H2BK34ub (but not unmodified) nucleosomes, NAP1 could assemble symmetrically- or asymmetrically ubiquitylated nucleosomes under 'physiological' conditions in vitro.

CONCLUSIONS AND GENERAL SIGNIFICANCE

The increased mobility of one nucleosomal H2A/H2B dimer is an intrinsic nucleosome destabilizing property of H2BK34 ubiquitylation that has the intranucleosome bases. The ability of NAP to reasonably efficiently assemble H2BK34-ubiquitylated nucleosomes supposes a potential mechanism for deposition/distribution of H2BK34ub mark in the MOF-MSL independent manner (for example, during histone dimer exchange upon transcription elongation).

摘要

背景

除了作为组蛋白“读取器”的结合位点的基因调控功能外,一些组蛋白修饰可以直接影响核小体结构。MOF-MSL 复合物沉积的 H2BK34 泛素化增加了体外核小体的动力学,并促进将一个 H2A/H2B 二聚体捐赠给组蛋白受体。

方法

我们在存在或不存在组蛋白受体的情况下,评估了在“生理”离子条件下温度依赖性的 H2BK34 泛素化核小体的稳定性,并通过重组小鼠 NAP1 体外检查了泛素化核小体的组装和拆卸。

结果

H2BK34ub 修饰足以独立于组蛋白结合剂促进仅一个 H2A/H2B 二聚体的选择性逐出。尽管 mNAP1 与 H2BK34ub(而非未修饰的)核小体具有强大的 H2A/H2B 二聚体置换效应,但 NAP1 可以在体外“生理”条件下组装对称或不对称泛素化核小体。

结论和普遍意义

一个核小体 H2A/H2B 二聚体的流动性增加是 H2BK34 泛素化的固有核小体不稳定特性,具有核小体内部的碱基。NAP 合理有效地组装 H2BK34 泛素化核小体的能力假设了一种 MOF-MSL 独立沉积/分布 H2BK34ub 标记的潜在机制(例如,在转录延伸过程中组蛋白二聚体交换期间)。

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