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DNA序列在决定酵母CUP1染色质中的核小体位置方面起着主要作用。

DNA sequence plays a major role in determining nucleosome positions in yeast CUP1 chromatin.

作者信息

Shen C H, Clark D J

机构信息

Laboratory of Cellular and Developmental Biology, NIDDK, National Institutes of Health, Bethesda, Maryland 20892, USA.

出版信息

J Biol Chem. 2001 Sep 14;276(37):35209-16. doi: 10.1074/jbc.M104733200. Epub 2001 Jul 18.

Abstract

The role of DNA sequence in determining nucleosome positions in vivo was investigated by comparing the positions adopted by nucleosomes reconstituted on a yeast plasmid in vitro using purified core histones with those in native chromatin containing the same DNA, described previously. Nucleosomes were reconstituted on a 2.5 kilobase pair DNA sequence containing the yeast TRP1ARS1 plasmid with CUP1 as an insert (TAC-DNA). Multiple, alternative, overlapping nucleosome positions were mapped on TAC-DNA. For the 58 positioned nucleosomes identified, the relative positioning strengths and the stabilities to salt and temperature were determined. These positions were, with a few exceptions, identical to those observed in native, remodeled TAC chromatin containing an activated CUP1 gene. Only some of these positions are utilized in native, unremodeled chromatin. These observations suggest that DNA sequence is likely to play a very important role in positioning nucleosomes in vivo. We suggest that events occurring in yeast CUP1 chromatin determine which positions are occupied in vivo and when they are occupied.

摘要

通过比较使用纯化的核心组蛋白在体外酵母质粒上重构的核小体所采用的位置与先前描述的含有相同DNA的天然染色质中的位置,研究了DNA序列在体内确定核小体位置中的作用。在一个2.5千碱基对的DNA序列上重构核小体,该序列包含带有CUP1插入片段的酵母TRP1ARS1质粒(TAC-DNA)。在TAC-DNA上绘制了多个、交替的、重叠的核小体位置。对于鉴定出的58个定位核小体,确定了其相对定位强度以及对盐和温度的稳定性。除了少数例外,这些位置与在含有活化CUP1基因的天然、重塑的TAC染色质中观察到的位置相同。在天然、未重塑的染色质中仅利用了其中一些位置。这些观察结果表明,DNA序列可能在体内核小体定位中起着非常重要的作用。我们认为,酵母CUP1染色质中发生的事件决定了体内哪些位置被占据以及何时被占据。

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