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组蛋白H1与H1缺失的多核小体重新结合。

Reassociation of histone H1 to H1-depleted polynucleosomes.

作者信息

Klingholz R, Strätling W H

出版信息

J Biol Chem. 1982 Nov 10;257(21):13101-7.

PMID:7130195
Abstract

A new procedure is described for the reassociation of histone H1 to rat liver polynucleosomes selectively depleted of H1 and nonhistone proteins. The fidelity of reconstitution was scrutinized by nuclease digestion and sedimentation studies monitoring the regeneration of structural features which disappear following removal of H1. The results demonstrate that the 166-base pair barrier of digestion with micrococcal nuclease was restored in polynucleosomes reconstituted at the same ratio of H1 per octamer as that found in native nuclei, while association of twice that amount of H1 produced a barrier of digestion at about 178-180 base pairs. Polynucleosomes associated with polylysine exhibited a similar barrier as H1-depleted polynucleosomes. Digestion of H1-reconstituted polynucleosomes with DNase I produced preferentially dinucleosomal DNA fragments in the same manner as that of untreated polynucleosomes. The rate of digestion of H1-reconstituted polynucleosomes by micrococcal nuclease and DNase I was also comparable to that of untreated polynucleosomes. Sedimentation of H1-reconstituted polynucleosomes in a quasi-physiological ionic milieu revealed the regeneration of disassembly-refractory particles, a structural feature of untreated polynucleosomes. We conclude that the nucleosomal and supra-nucleosomal structure of polynucleosomes was reconstituted with fidelity.

摘要

本文描述了一种新方法,用于使组蛋白H1重新结合到选择性去除了H1和非组蛋白的大鼠肝脏多核小体上。通过核酸酶消化和沉降研究来仔细检查重组的保真度,这些研究监测了去除H1后消失的结构特征的再生情况。结果表明,在以与天然细胞核中相同的每个八聚体H1比例重构的多核小体中,微球菌核酸酶消化的166个碱基对屏障得以恢复,而两倍量H1的结合则在约178 - 180个碱基对处产生消化屏障。与聚赖氨酸结合的多核小体表现出与H1缺失的多核小体类似的屏障。用DNase I消化H1重构的多核小体,与未处理的多核小体一样,优先产生双核小体DNA片段。微球菌核酸酶和DNase I对H1重构的多核小体的消化速率也与未处理的多核小体相当。在准生理离子环境中H1重构的多核小体的沉降显示出抗解聚颗粒的再生,这是未处理的多核小体的一种结构特征。我们得出结论,多核小体的核小体和超核小体结构得以忠实地重构。

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