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II 型 DNA 拓扑异构酶导致基因组 DNA 发生自发性双链断裂。

Type II DNA Topoisomerases Cause Spontaneous Double-Strand Breaks in Genomic DNA.

机构信息

Department of Radiation Genetics, Graduate School of Medicine, Kyoto University, Yoshida Konoe, Sakyo-ku, Kyoto 606-8501, Japan.

Department of Applied Biosciences, College of Agriculture and Life Sciences, Kyungpook National University, Daegu 41566, Korea.

出版信息

Genes (Basel). 2019 Oct 30;10(11):868. doi: 10.3390/genes10110868.

Abstract

Type II DNA topoisomerase enzymes (TOP2) catalyze topological changes by strand passage reactions. They involve passing one intact double stranded DNA duplex through a transient enzyme-bridged break in another (gated helix) followed by ligation of the break by TOP2. A TOP2 poison, etoposide blocks TOP2 catalysis at the ligation step of the enzyme-bridged break, increasing the number of stable TOP2 cleavage complexes (TOP2ccs). Remarkably, such pathological TOP2ccs are formed during the normal cell cycle as well as in postmitotic cells. Thus, this 'abortive catalysis' can be a major source of spontaneously arising DNA double-strand breaks (DSBs). TOP2-mediated DSBs are also formed upon stimulation with physiological concentrations of androgens and estrogens. The frequent occurrence of TOP2-mediated DSBs was previously not appreciated because they are efficiently repaired. This repair is performed in collaboration with BRCA1, BRCA2, MRE11 nuclease, and tyrosyl-DNA phosphodiesterase 2 (TDP2) with nonhomologous end joining (NHEJ) factors. This review first discusses spontaneously arising DSBs caused by the abortive catalysis of TOP2 and then summarizes proteins involved in repairing stalled TOP2ccs and discusses the genotoxicity of the sex hormones.

摘要

II 型 DNA 拓扑异构酶(TOP2)通过链穿越反应催化拓扑结构变化。它们涉及一条完整的双链 DNA 双链穿过另一条(门控螺旋)中短暂的酶桥断裂,然后由 TOP2 连接断裂。TOP2 抑制剂依托泊苷在酶桥断裂的连接步骤中阻断 TOP2 催化,增加稳定的 TOP2 切割复合物(TOP2ccs)的数量。值得注意的是,这种病理性的 TOP2ccs 不仅在有丝分裂后细胞中,而且在正常细胞周期中也会形成。因此,这种“无效催化”可能是自发产生的 DNA 双链断裂(DSB)的主要来源。在生理浓度的雄激素和雌激素刺激下,也会形成 TOP2 介导的 DSB。以前没有意识到 TOP2 介导的 DSB 的频繁发生,因为它们可以被有效修复。这种修复是与 BRCA1、BRCA2、MRE11 核酸酶和酪氨酸-DNA 磷酸二酯酶 2(TDP2)与非同源末端连接(NHEJ)因子协同完成的。这篇综述首先讨论了由 TOP2 无效催化引起的自发产生的 DSB,然后总结了参与修复停滞的 TOP2cc 的蛋白质,并讨论了性激素的遗传毒性。

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