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核仁作为维持基因组稳定性和癌症发病机制的新兴枢纽。

Nucleolus as an emerging hub in maintenance of genome stability and cancer pathogenesis.

机构信息

Division of Genome Biology, Department of Medical Biochemistry and Biophysics, Karolinska Institutet, Stockholm, Sweden.

Department of Molecular Medicine and Biotechnology, School of Medicine, University of Rijeka, Rijeka, Croatia.

出版信息

Oncogene. 2018 May;37(18):2351-2366. doi: 10.1038/s41388-017-0121-z. Epub 2018 Feb 12.

Abstract

The nucleolus is the major site for synthesis of ribosomes, complex molecular machines that are responsible for protein synthesis. A wealth of research over the past 20 years has clearly indicated that both quantitative and qualitative alterations in ribosome biogenesis can drive the malignant phenotype via dysregulation of protein synthesis. However, numerous recent proteomic, genomic, and functional studies have implicated the nucleolus in the regulation of processes that are unrelated to ribosome biogenesis, including DNA-damage response, maintenance of genome stability and its spatial organization, epigenetic regulation, cell-cycle control, stress responses, senescence, global gene expression, as well as assembly or maturation of various ribonucleoprotein particles. In this review, the focus will be on features of rDNA genes, which make them highly vulnerable to DNA damage and intra- and interchromosomal recombination as well as built-in mechanisms that prevent and repair rDNA damage, and how dysregulation of this interplay affects genome-wide DNA stability, gene expression and the balance between euchromatin and heterochromatin. We will also present the most recent insights into how malfunction of these cellular processes may be a central driving force of human malignancies, and propose a promising new therapeutic approach for the treatment of cancer.

摘要

核仁是核糖体合成的主要场所,核糖体是负责蛋白质合成的复杂分子机器。过去 20 年来的大量研究清楚地表明,核糖体生物发生的数量和质量改变都可以通过蛋白质合成的失调来驱动恶性表型。然而,最近的许多蛋白质组学、基因组学和功能研究表明,核仁参与了与核糖体生物发生无关的过程的调节,包括 DNA 损伤反应、基因组稳定性及其空间组织的维持、表观遗传调控、细胞周期控制、应激反应、衰老、全局基因表达以及各种核糖核蛋白颗粒的组装或成熟。在这篇综述中,重点将放在 rDNA 基因的特征上,这些特征使它们极易受到 DNA 损伤和染色体内和染色体间重组的影响,以及防止和修复 rDNA 损伤的内置机制,以及这种相互作用的失调如何影响全基因组 DNA 的稳定性、基因表达以及常染色质和异染色质之间的平衡。我们还将介绍最近对这些细胞过程功能障碍如何可能成为人类恶性肿瘤的核心驱动因素的深入了解,并提出一种有前途的癌症治疗新治疗方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3c15/5931986/33c0e93fcbec/41388_2017_121_Fig1_HTML.jpg

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