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TDP2 promotes repair of topoisomerase I-mediated DNA damage in the absence of TDP1

机译:在没有TDP1的情况下,TDP2促进拓扑异构酶I介导的DNA损伤的修复

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The abortive activity of topoisomerases can result in clastogenic and/or lethal DNA damage in which the topoisomerase is covalently linked to the 3′- or 5′-terminus of a DNA strand break. This type of DNA damage is implicated in chromosome translocations and neurological disease and underlies the clinical efficacy of an important class of anticancer topoisomerase ‘poisons’. Tyrosyl DNA phosphodiesterase-1 protects cells from abortive topoisomerase I (Top1) activity by hydrolyzing the 3′-phosphotyrosyl bond that links Top1 to a DNA strand break and is currently the only known human enzyme that displays this activity in cells. Recently, we identified a second tyrosyl DNA phosphodiesterase (TDP2; aka TTRAP/EAPII) that possesses weak 3′-tyrosyl DNA phosphodiesterase (3′-TDP) activity, in vitro. Herein, we have examined whether TDP2 contributes to the repair of Top1-mediated DNA breaks by deleting Tdp1 and Tdp2 separately and together in murine and avian cells. We show that while deletion of Tdp1 in wild-type DT40 cells and mouse embryonic fibroblasts decreases DNA strand break repair rates and cellular survival in response to Top1-induced DNA damage, deletion of Tdp2 does not. However, deletion of both Tdp1 and Tdp2 reduces rates of DNA strand break repair and cell survival below that observed in Tdp1?/? cells, suggesting that Tdp2 contributes to cellular 3′-TDP activity in the absence of Tdp1. Consistent with this idea, over-expression of human TDP2 in Tdp1?/?/Tdp2?/?/? DT40 cells increases DNA strand break repair rates and cell survival above that observed in Tdp1?/? DT40 cells, suggesting that Tdp2 over-expression can partially complement the defect imposed by loss of Tdp1. Finally, mice lacking both Tdp1 and Tdp2 exhibit greater sensitivity to Top1 poisons than do mice lacking Tdp1 alone, further suggesting that Tdp2 contributes to the repair of Top1-mediated DNA damage in the absence of Tdp1. In contrast, we failed to detect a contribution for Tdp1 to repair Top2-mediated damage. Together, our data suggest that Tdp1 and Tdp2 fulfil overlapping roles following Top1-induced DNA damage, but not following Top2-induced DNA damage, in vivo.
机译:拓扑异构酶的流产活性可能导致破坏性和/或致死性的DNA损伤,其中拓扑异构酶与DNA链断裂的3'-或5'-末端共价连接。这种类型的DNA损伤与染色体易位和神经系统疾病有关,并且是一类重要的抗癌拓扑异构酶“毒药”的临床疗效的基础。酪氨酰DNA磷酸二酯酶-1通过水解将Top1与DNA链断裂连接的3'-磷酸酪氨酰键来保护细胞免受流产的拓扑异构酶I(Top1)的活性,并且是目前唯一已知的在细胞中表现出这种活性的人类酶。最近,我们在体外鉴定了第二种酪氨酸DNA磷酸二酯酶(TDP2;又名TTRAP / EAPII),其具有弱的3'-酪氨酰DNA磷酸二酯酶(3'-TDP)活性。在本文中,我们已经检查了TDP2是否通过在鼠和禽类细胞中分别或一起删除Tdp1和Tdp2来修复Top1介导的DNA断裂。我们显示,虽然在野生型DT40细胞和小鼠胚胎成纤维细胞中Tdp1的缺失降低了DNA链断裂修复率和对Top1诱导的DNA损伤响应的细胞存活率,但Tdp2的缺失却没有。然而,Tdp1和Tdp2的缺失降低了DNA链断裂修复的速率和细胞存活率,低于在Tdp1α/β中观察到的水平。提示Tdp2在没有Tdp1的情况下有助于细胞3'-TDP活性。与这个想法一致,人TDP2在Tdp1 // Tdp2 ///中过表达。 DT40细胞提高了DNA链断裂修复率,并使细胞存活率高于Tdp1?/?中观察到的水平。 DT40细胞,提示Tdp2的过度表达可以部分弥补Tdp1丢失所造成的缺陷。最后,缺乏Tdp1和Tdp2的小鼠比没有单独的Tdp1的小鼠对Top1中毒表现出更高的敏感性,这进一步表明,在没有Tdp1的情况下,Tdp2有助于修复Top1介导的DNA损伤。相反,我们未能检测到Tdp1修复Top2介导的损伤的作用。在一起,我们的数据表明,Tdp1和Tdp2在Top1诱导的DNA损伤后在体内发挥重叠作用,但在Top2诱导的DNA损伤后在体内不起作用。

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