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局部蛋白质 - DNA 相互作用可能决定酵母质粒上核小体的位置。

Local protein-DNA interactions may determine nucleosome positions on yeast plasmids.

作者信息

Thoma F, Simpson R T

出版信息

Nature. 1985;315(6016):250-2. doi: 10.1038/315250a0.

Abstract

The structure of the nucleosome core particle, the basic structural subunit of chromatin, is well known. Although nucleosomes often appear to be positioned randomly with respect to DNA sequences, in some cases they seem to occupy precisely defined positions on the DNA. The yeast plasmid TRP1ARS1 contains three precisely positioned, stable nucleosomes, I, II and III, which are flanked by nuclease-sensitive regions. Our aim in the present study was to determine whether the positions of these three nucleosomes relate to (1) protein-DNA interactions; (2) the limited space between nuclease-sensitive regions, which is just long enough to accommodate three yeast nucleosomes (that is, boundary conditions); or (3) proximity to the putative origin of replication in one of the nuclease-sensitive regions. We have tested these alternatives by analysing the positions of nucleosomes after insertion of various lengths of DNA into this region and assembly of chromatin in vivo. Our results suggest that specific protein-DNA interactions are the most likely determinants of these nucleosome positions.

摘要

核小体核心颗粒是染色质的基本结构亚基,其结构已为人熟知。尽管核小体相对于DNA序列的定位常常看似是随机的,但在某些情况下,它们似乎在DNA上占据精确界定的位置。酵母质粒TRP1ARS1含有三个精确定位的稳定核小体,即核小体I、II和III,它们两侧是核酸酶敏感区域。我们在本研究中的目的是确定这三个核小体的位置是否与以下因素相关:(1)蛋白质-DNA相互作用;(2)核酸酶敏感区域之间有限的空间,该空间长度刚好足以容纳三个酵母核小体(即边界条件);或(3)靠近其中一个核酸酶敏感区域中假定的复制起点。我们通过分析在该区域插入各种长度的DNA并在体内组装染色质后核小体的位置,对这些可能性进行了测试。我们的结果表明,特定的蛋白质-DNA相互作用最有可能是这些核小体位置的决定因素。

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