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超螺旋pBR322 DNA上核小体组装中的协同作用。

Cooperativity in nucleosomes assembly on supercoiled pBR322 DNA.

作者信息

Forte P, Leoni L, Sampaolese B, Savino M

机构信息

Centro di Studio per gli Acidi Nucleici del CNR, Rome, Italy.

出版信息

Nucleic Acids Res. 1989 Nov 11;17(21):8683-94. doi: 10.1093/nar/17.21.8683.

Abstract

Many studies have shown that in reconstituted chromatin model systems, containing only purified DNA and histone octamer, nucleosomes can adopt well defined locations with respect to DNA nucleotide sequence. Recently, nucleosome-nucleosome interactions were suggested as one of the factors underlying preferential nucleosomes positioning. In the present paper this aspect has been studied by topological analysis and electron microscopy visualization of minichromosomes reconstituted at different histone/DNA ratios. Both methods suggest that cooperativity plays a role in nucleosomes formation. A linear cooperative model in which nucleosomes are formed on discrete sites with cooperative interactions occurring only between nearest neighbours allows to calculate the cooperative constant. The reported results show that basic interactions, which are of relevance in the process of chromatin folding, are present also in very simple model system.

摘要

许多研究表明,在仅包含纯化的DNA和组蛋白八聚体的重构染色质模型系统中,核小体能够相对于DNA核苷酸序列采取明确的定位。最近,核小体 - 核小体相互作用被认为是优先核小体定位的潜在因素之一。在本文中,通过拓扑分析和电子显微镜观察不同组蛋白/DNA比例重构的微型染色体对此方面进行了研究。两种方法均表明协同作用在核小体形成中起作用。一种线性协同模型,其中核小体在离散位点形成,且协同相互作用仅在最近邻之间发生,该模型允许计算协同常数。报道的结果表明,在染色质折叠过程中起重要作用的基本相互作用,在非常简单的模型系统中也存在。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cddd/335036/0dc2d34380a0/nar00138-0282-a.jpg

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