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核小体定位与间距:从全基因组图谱到单数组。

Nucleosome positioning and spacing: from genome-wide maps to single arrays.

机构信息

Molecular Biology Division, Biomedical Center, LMU Munich, and Center for Integrated Protein Science Munich (CIPSM), Germany

出版信息

Essays Biochem. 2019 Apr 23;63(1):5-14. doi: 10.1042/EBC20180058.

Abstract

The positioning of nucleosomes relative to DNA and their neighboring nucleosomes represents a fundamental layer of chromatin organization. Changes in nucleosome positioning and spacing affect the accessibility of DNA to regulatory factors and the formation of higher order chromatin structures. Sequencing of mononucleosomal fragments allowed mapping nucleosome positions on a genome-wide level in many organisms. This revealed that successions of evenly spaced and well-positioned nucleosomes-so called phased nucleosome arrays-occur at the 5' end of many active genes and in the vicinity of transcription factor and other protein binding sites. Phased arrays arise from the interplay of barrier elements on the DNA, which position adjacent nucleosomes, and the nucleosome spacing activity of ATP-dependent chromatin remodelers. A shortcoming of classic mononucleosomal mapping experiments is that they only reveal nucleosome spacing and array regularity at select sites in the genome with well-positioned nucleosomes. However, new technological approaches elucidate nucleosome array structure throughout the genome and with single-cell resolution. In the future, it will be interesting to see whether changes in nucleosome array regularity and spacing contribute to the formation of higher order chromatin structures and the spatial organization of the genome .

摘要

核小体相对于 DNA 及其相邻核小体的定位代表了染色质组织的一个基本层次。核小体定位和间距的变化会影响 DNA 对调控因子的可及性以及更高阶染色质结构的形成。在许多生物体中,对单核小体片段进行测序可以在全基因组水平上绘制核小体的位置图谱。这表明,在许多活跃基因的 5'端和转录因子及其他蛋白质结合位点附近,出现了连续的、均匀间隔且定位良好的核小体,即所谓的相定位核小体阵列。相定位阵列是由 DNA 上的屏障元件以及 ATP 依赖性染色质重塑因子的核小体间隔活性相互作用产生的。经典单核小体作图实验的一个缺点是,它们只能在基因组中具有定位良好的核小体的特定位置揭示核小体间隔和阵列规则性。然而,新的技术方法阐明了整个基因组的核小体阵列结构,并具有单细胞分辨率。未来,核小体阵列规则性和间隔的变化是否有助于高阶染色质结构和基因组的空间组织的形成,这将是一个有趣的问题。

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