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核糖体 DNA 和核仁在基因组组织中的作用。

Ribosomal DNA and the nucleolus in the context of genome organization.

机构信息

Stowers Institute for Medical Research, Kansas City, MO, USA.

Department of Biochemistry and Molecular Biology, University of Kansas Medical Center, Kansas City, KS, USA.

出版信息

Chromosome Res. 2019 Mar;27(1-2):109-127. doi: 10.1007/s10577-018-9600-5. Epub 2019 Jan 17.

Abstract

The nucleolus constitutes a prominent nuclear compartment, a membraneless organelle that was first documented in the 1830s. The fact that specific chromosomal regions were present in the nucleolus was recognized by Barbara McClintock in the 1930s, and these regions were termed nucleolar organizing regions, or NORs. The primary function of ribosomal DNA (rDNA) is to produce RNA components of ribosomes. Yet, ribosomal DNA also plays a pivotal role in nuclear organization by assembling the nucleolus. This review is focused on the rDNA and associated proteins in the context of genome organization. Recent advances in understanding chromatin organization suggest that chromosomes are organized into topological domains by a DNA loop extrusion process. We discuss the perspective that rDNA may also be organized in topological domains constrained by structural maintenance of chromosome protein complexes such as cohesin and condensin. Moreover, biophysical studies indicate that the nucleolar compartment may be formed by active processes as well as phase separation, a perspective that lends further insight into nucleolar organization. The application of the latest perspectives and technologies to this organelle help further elucidate its role in nuclear structure and function.

摘要

核仁是一个突出的核区,是一种无膜细胞器,于 19 世纪 30 年代首次被记录。芭芭拉·麦克林托克(Barbara McClintock)在 20 世纪 30 年代就已经意识到,特定的染色体区域存在于核仁中,这些区域被称为核仁组织区(NORs)。核糖体 DNA(rDNA)的主要功能是产生核糖体的 RNA 成分。然而,rDNA 通过组装核仁,在核组织中也起着至关重要的作用。本综述主要关注基因组组织背景下的 rDNA 及其相关蛋白。最近在理解染色质组织方面的进展表明,染色体通过 DNA 环挤出过程组织成拓扑结构域。我们讨论了 rDNA 也可能受结构维持染色体蛋白复合物(如黏合蛋白和凝聚蛋白)的拓扑结构域约束的观点。此外,生物物理研究表明,核仁区室可能是由活性过程以及相分离形成的,这一观点进一步深入了解了核仁的组织。将最新的观点和技术应用于该细胞器有助于进一步阐明其在核结构和功能中的作用。

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