首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Mapping nucleosome position at single base-pair resolution by using site-directed hydroxyl radicals.
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Mapping nucleosome position at single base-pair resolution by using site-directed hydroxyl radicals.

机译:通过使用定点羟基自由基将核小体位置定位在单个碱基对的分辨率上。

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摘要

A base-pair resolution method for determining nucleosome position in vitro has been developed to com- plement existing, less accurate methods. Cysteaminyl EDTA was tethered to a recombinant histone octamer via a mutant histone H4 with serine 47 replaced by cysteine. When assembled into nucleosome core particles, the DNA could be cut site specifically by hydroxyl radical-catalyzed chain scission by using the Fenton reaction. Strand cleavage occurs mainly at a single nucleotide close to the dyad axis of the core particle, and assignment of this location via the symmetry of the nucleosome allows base-pair resolution mapping of the histone octamer position on the DNA. The positions of the histone octamer and H3H4 tetramer were mapped on a 146-bp Lytechinus variegatus 5S rRNA sequence and a twofold-symmetric derivative. The weakness of translational determinants of nucleosome positioning relative to the overall affinity of the histone proteins for this DNA is clearly demonstrated. The predominant location of both histone octamer and H3H4 tetramer assembled on the 5S rDNA is off center. Shifting the nucleosome core particle position along DNA within a conserved rotational phase could be induced under physiologically relevant conditions. Since nucleosome shifting has important consequences for chromatin structure and gene regulation, an approach to the thermodynamic characterization of this movement is proposed. This mapping method is potentially adaptable for determining nucleosome position in chromatin in vivo.
机译:已经开发了一种用于确定体外核小体位置的碱基对解析方法,以补充现有的,不太准确的方法。胱氨酰EDTA通过突变组蛋白H4被束缚到重组组蛋白八聚体上,其中丝氨酸47被半胱氨酸替代。当组装成核小体核心颗粒时,可以使用Fenton反应通过羟自由基催化的链断裂来特异性切割DNA。链切割主要发生在靠近核心颗粒的二聚体轴的单个核苷酸上,并且通过核小体的对称性分配该位置可以实现DNA上组蛋白八聚体位置的碱基对分辨率映射。组蛋白八聚体和H3H4四聚体的位置被定位在146 bp的Lytechinus variegatus 5S rRNA序列和双重对称衍生物上。相对于组蛋白对该DNA的整体亲和力而言,核小体定位的翻译决定子的弱点已得到清楚证明。组装在5S rDNA上的组蛋白八聚体和H3H4四聚体的主要位置偏心。在生理相关条件下,可以诱导核糖体核心颗粒在保守的旋转相中沿DNA的位置移动。由于核小体移位对染色质结构和基因调控具有重要意义,因此提出了一种对该运动进行热力学表征的方法。这种作图方法可能适用于确定体内染色质中的核小体位置。

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