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活细胞中的染色质行为:来自单核小体成像和追踪的启示。

Chromatin behavior in living cells: Lessons from single-nucleosome imaging and tracking.

机构信息

Genome Dynamics Laboratory, National Institute of Genetics, ROIS, Mishima, Shizuoka, Japan.

Department of Genetics, School of Life Science, SOKENDAI, Mishima, Shizuoka, Japan.

出版信息

Bioessays. 2022 Jul;44(7):e2200043. doi: 10.1002/bies.202200043. Epub 2022 Jun 3.

Abstract

Eukaryotic genome DNA is wrapped around core histones and forms a nucleosome structure. Together with associated proteins and RNAs, these nucleosomes are organized three-dimensionally in the cell as chromatin. Emerging evidence demonstrates that chromatin consists of rather irregular and variable nucleosome arrangements without the regular fiber structure and that its dynamic behavior plays a critical role in regulating various genome functions. Single-nucleosome imaging is a promising method to investigate chromatin behavior in living cells. It reveals local chromatin motion, which reflects chromatin organization not observed in chemically fixed cells. The motion data is like a gold mine. Data analyses from many aspects bring us more and more information that contributes to better understanding of genome functions. In this review article, we describe imaging of single-nucleosomes and their tracked behavior through oblique illumination microscopy. We also discuss applications of this technique, especially in elucidating nucleolar organization in living cells.

摘要

真核生物基因组 DNA 缠绕在核心组蛋白周围,形成核小体结构。这些核小体与相关蛋白和 RNA 一起,在细胞中以染色质的形式进行三维组织。新出现的证据表明,染色质由相当不规则和可变的核小体排列组成,没有规则的纤维结构,其动态行为在调节各种基因组功能方面起着关键作用。单核小体成像是研究活细胞中染色质行为的一种很有前途的方法。它揭示了局部染色质运动,反映了在化学固定细胞中观察不到的染色质组织。这些运动数据就像一座金矿。从多个方面进行数据分析为我们提供了越来越多的信息,有助于更好地理解基因组功能。在这篇综述文章中,我们描述了通过斜照明显微镜对单核小体及其跟踪行为的成像。我们还讨论了该技术的应用,特别是在阐明活细胞中核仁组织方面的应用。

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