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核糖体 DNA 不稳定性与基因组适应性。

Ribosomal DNA instability and genome adaptability.

机构信息

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

Open University, Milton Keynes, MK7 6BJ, UK.

出版信息

Chromosome Res. 2019 Mar;27(1-2):73-87. doi: 10.1007/s10577-018-9599-7. Epub 2019 Jan 3.

Abstract

Ribosomes are large, multi-subunit ribonucleoprotein complexes, essential for protein synthesis. To meet the high cellular demand for ribosomes, all eukaryotes have numerous copies of ribosomal DNA (rDNA) genes that encode ribosomal RNA (rRNA), usually far in excess of the requirement for ribosome biogenesis. In all eukaryotes studied, rDNA genes are arranged in one or more clusters of tandem repeats localized to nucleoli. The tandem arrangement of repeats, combined with the high rates of transcription at the rDNA loci, and the difficulty of replicating repetitive sequences make the rDNA inherently unstable and particularly susceptible to large variations in repeat copy number. Despite mounting evidence suggesting extra-ribosomal functions of the rDNA, its repetitive nature has excluded it from traditional sequencing-based studies. However, more recently, several studies have revealed the unique potential of the rDNA to act as a "canary in the coalmine," being particularly sensitive to genomic stresses and acting as a source of adaptive response. Here, we review evidence uncovering mechanisms of regulation of instability and copy number variation at the rDNA and their role in adaptation to the environment, which could serve to understand the basic principles governing the behavior of other tandem repeats and their role in shaping the genome.

摘要

核糖体是一种大型的多亚基核糖核蛋白复合物,对于蛋白质合成至关重要。为了满足细胞对核糖体的高需求,所有真核生物都有许多核糖体 DNA(rDNA)基因的拷贝,这些基因通常远远超过核糖体生物发生的要求,编码核糖体 RNA(rRNA)。在所有已研究的真核生物中,rDNA 基因排列在一个或多个定位于核仁的串联重复序列簇中。重复序列的串联排列,加上 rDNA 位点的高转录率,以及复制重复序列的困难,使得 rDNA 本质上不稳定,特别容易发生重复拷贝数的大变化。尽管越来越多的证据表明 rDNA 具有核糖体外的功能,但它的重复性质使它无法被传统的基于测序的研究所涵盖。然而,最近的几项研究揭示了 rDNA 作为“煤矿中的金丝雀”的独特潜力,它对基因组压力特别敏感,并作为适应性反应的来源。在这里,我们回顾了 rDNA 不稳定性和拷贝数变异的调控机制的证据,并探讨了它们在适应环境中的作用,这有助于我们理解其他串联重复的行为基本原理及其在塑造基因组中的作用。

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