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基因组不稳定性的原因。

Causes of genome instability.

机构信息

Centro Andaluz de Biología Molecular y Medicina Regenerativa (CABIMER), Universidad de Sevilla, 41092 Seville, Spain; email:

出版信息

Annu Rev Genet. 2013;47:1-32. doi: 10.1146/annurev-genet-111212-133232. Epub 2013 Jul 31.

Abstract

Genomes are transmitted faithfully from dividing cells to their offspring. Changes that occur during DNA repair, chromosome duplication, and transmission or via recombination provide a natural source of genetic variation. They occur at low frequency because of the intrinsic variable nature of genomes, which we refer to as genome instability. However, genome instability can be enhanced by exposure to external genotoxic agents or as the result of cellular pathologies. We review the causes of genome instability as well as how it results in hyper-recombination, genome rearrangements, and chromosome fragmentation and loss, which are mainly mediated by double-strand breaks or single-strand gaps. Such events are primarily associated with defects in DNA replication and the DNA damage response, and show high incidence at repetitive DNA, non-B DNA structures, DNA-protein barriers, and highly transcribed regions. Identifying the causes of genome instability is crucial to understanding genome dynamics during cell proliferation and its role in cancer, aging, and a number of rare genetic diseases.

摘要

基因组从分裂细胞中被准确传递给后代。在 DNA 修复、染色体复制、传递或通过重组过程中发生的变化为遗传变异提供了自然来源。由于基因组固有的可变性质,这些变化发生的频率很低,我们称之为基因组不稳定性。然而,基因组不稳定性可以通过暴露于外部遗传毒性物质或细胞病变来增强。我们综述了基因组不稳定性的原因,以及它如何导致超重组、基因组重排以及染色体片段化和丢失,这些主要是由双链断裂或单链缺口介导的。这些事件主要与 DNA 复制和 DNA 损伤反应缺陷有关,并且在重复 DNA、非 B DNA 结构、DNA-蛋白质障碍和高转录区域高发。确定基因组不稳定性的原因对于理解细胞增殖过程中的基因组动态及其在癌症、衰老和许多罕见遗传疾病中的作用至关重要。

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