Spatial Organization of Chromatin: Emergence of Chromatin Structure During Development.

IF 3.8 2区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY ACS Chemical Biology Pub Date : 2021-10-06 Epub Date: 2021-07-06 DOI:10.1146/annurev-cellbio-032321-035734
Rajarshi P Ghosh, Barbara J Meyer
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引用次数: 23

Abstract

Nuclei are central hubs for information processing in eukaryotic cells. The need to fit large genomes into small nuclei imposes severe restrictions on genome organization and the mechanisms that drive genome-wide regulatory processes. How a disordered polymer such as chromatin, which has vast heterogeneity in its DNA and histone modification profiles, folds into discernibly consistent patterns is a fundamental question in biology. Outstanding questions include how genomes are spatially and temporally organized to regulate cellular processes with high precision and whether genome organization is causally linked to transcription regulation. The advent of next-generation sequencing, super-resolution imaging, multiplexed fluorescent in situ hybridization, and single-molecule imaging in individual living cells has caused a resurgence in efforts to understand the spatiotemporal organization of the genome. In this review, we discuss structural and mechanistic properties of genome organization at different length scales and examine changes in higher-order chromatin organization during important developmental transitions.

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染色质的空间组织:发育过程中染色质结构的出现。
细胞核是真核细胞信息处理的中心枢纽。将大基因组放入小细胞核的需要对基因组组织和驱动全基因组调控过程的机制施加了严格的限制。染色质等DNA和组蛋白修饰谱具有巨大异质性的无序聚合物如何折叠成明显一致的模式,是生物学中的一个基本问题。悬而未决的问题包括基因组如何在空间和时间上组织起来以高精度调节细胞过程,以及基因组组织是否与转录调节有因果关系。下一代测序、超分辨率成像、多重荧光原位杂交和单个活细胞中单分子成像的出现,使人们重新开始努力了解基因组的时空组织。在这篇综述中,我们讨论了不同长度尺度下基因组组织的结构和机制特性,并研究了重要发育转变过程中高阶染色质组织的变化。
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来源期刊
ACS Chemical Biology
ACS Chemical Biology 生物-生化与分子生物学
CiteScore
7.50
自引率
5.00%
发文量
353
审稿时长
3.3 months
期刊介绍: ACS Chemical Biology provides an international forum for the rapid communication of research that broadly embraces the interface between chemistry and biology. The journal also serves as a forum to facilitate the communication between biologists and chemists that will translate into new research opportunities and discoveries. Results will be published in which molecular reasoning has been used to probe questions through in vitro investigations, cell biological methods, or organismic studies. We welcome mechanistic studies on proteins, nucleic acids, sugars, lipids, and nonbiological polymers. The journal serves a large scientific community, exploring cellular function from both chemical and biological perspectives. It is understood that submitted work is based upon original results and has not been published previously.
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