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DNA拓扑异构酶II诱导的DNA双链断裂和染色体易位

DNA Double Strand Breaks and Chromosomal Translocations Induced by DNA Topoisomerase II.

作者信息

Gómez-Herreros Fernando

机构信息

Instituto de Biomedicina de Sevilla (IBiS), Hospital Virgen del Rocío-CSIC-Universidad de Sevilla, Seville, Spain.

Departamento de Genética, Universidad de Sevilla, Seville, Spain.

出版信息

Front Mol Biosci. 2019 Dec 10;6:141. doi: 10.3389/fmolb.2019.00141. eCollection 2019.

Abstract

DNA double strand breaks (DSBs) are the most cytotoxic lesions of those occurring in the DNA and can lead to cell death or result in genome mutagenesis and chromosomal translocations. Although most of these rearrangements have detrimental effects for cellular survival, single events can provide clonal advantage and result in abnormal cellular proliferation and cancer. The origin and the environment of the DNA break or the repair pathway are key factors that influence the frequency at which these events appear. However, the molecular mechanisms that underlie the formation of chromosomal translocations remain unclear. DNA topoisomerases are essential enzymes present in all cellular organisms with critical roles in DNA metabolism and that have been linked to the formation of deleterious DSBs for a long time. DSBs induced by the abortive activity of DNA topoisomerase II (TOP2) are "trending topic" because of their possible role in genome instability and oncogenesis. Furthermore, transcription associated TOP2 activity appears to be one of the most determining causes behind the formation of chromosomal translocations. In this review, the origin of recombinogenic TOP2 breaks and the determinants behind their tendency to translocate will be summarized.

摘要

DNA双链断裂(DSBs)是DNA发生的最具细胞毒性的损伤,可导致细胞死亡或引起基因组诱变和染色体易位。尽管这些重排中的大多数对细胞存活具有有害影响,但单个事件可提供克隆优势并导致细胞异常增殖和癌症。DNA断裂的起源和环境或修复途径是影响这些事件出现频率的关键因素。然而,染色体易位形成的分子机制仍不清楚。DNA拓扑异构酶是所有细胞生物体中存在的必需酶,在DNA代谢中起关键作用,并且长期以来一直与有害DSBs的形成有关。由于DNA拓扑异构酶II(TOP2)的流产活性诱导的DSBs在基因组不稳定和肿瘤发生中的可能作用,它们成为了“热门话题”。此外,与转录相关的TOP2活性似乎是染色体易位形成背后最具决定性的原因之一。在本综述中,将总结重组性TOP2断裂的起源及其易位倾向背后的决定因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b4de/6915882/252a5ee5e34c/fmolb-06-00141-g0001.jpg

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