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全基因组规模的遗传相互作用和细胞成像证实细胞分裂对瞬时拓扑异构酶II缺陷有害。

Genome-Scale Genetic Interactions and Cell Imaging Confirm Cytokinesis as Deleterious to Transient Topoisomerase II Deficiency in .

作者信息

Ramos-Pérez Cristina, Ayra-Plasencia Jessel, Matos-Perdomo Emiliano, Lisby Michael, Brown Grant W, Machín Félix

机构信息

Unidad de Investigación, Hospital Universitario Nuestra Señora de Candelaria, 38010 Santa Cruz de Tenerife, Spain.

Universidad de la Laguna, 38200 San Cristóbal de La Laguna, Santa Cruz de Tenerife, Spain.

出版信息

G3 (Bethesda). 2017 Oct 5;7(10):3379-3391. doi: 10.1534/g3.117.300104.

Abstract

Topoisomerase II (Top2) is an essential protein that resolves DNA catenations. When Top2 is inactivated, mitotic catastrophe results from massive entanglement of chromosomes. Top2 is also the target of many first-line anticancer drugs, the so-called Top2 poisons. Often, tumors become resistant to these drugs by acquiring hypomorphic mutations in the genes encoding Top2 Here, we have compared the cell cycle and nuclear segregation of two coisogenic strains carrying thermosensitive alleles that differ in their resistance to Top2 poisons: the broadly-used poison-sensitive and the poison-resistant Furthermore, we have performed genome-scale synthetic genetic array (SGA) analyses for both alleles under permissive conditions, chronic sublethal Top2 downregulation, and acute, yet transient, Top2 inactivation. We find that slowing down mitotic progression, especially at the time of execution of the mitotic exit network (MEN), protects against Top2 deficiency. In all conditions, genetic protection was stronger in ; this correlated with cell biology experiments in this mutant, whereby we observed destabilization of both chromatin and ultrafine anaphase bridges by execution of MEN and cytokinesis. Interestingly, whereas transient inactivation of the critical MEN driver Cdc15 partly suppressed lethality, this was not the case when earlier steps within anaphase were disrupted; , We discuss the basis of this difference and suggest that accelerated progression through mitosis may be a therapeutic strategy to hypersensitize cancer cells carrying hypomorphic mutations in .

摘要

拓扑异构酶II(Top2)是一种解决DNA连环问题的必需蛋白质。当Top2失活时,有丝分裂灾难会因染色体的大量缠结而产生。Top2也是许多一线抗癌药物(即所谓的Top2毒物)的作用靶点。通常,肿瘤通过在编码Top2的基因中获得亚效突变而对这些药物产生抗性。在此,我们比较了携带对Top2毒物抗性不同的热敏等位基因的两个同基因菌株的细胞周期和核分离情况:广泛使用的对毒物敏感的菌株和对毒物抗性的菌株。此外,我们在允许条件、慢性亚致死性Top2下调以及急性但短暂的Top2失活情况下,对这两个等位基因进行了全基因组规模的合成遗传阵列(SGA)分析。我们发现减缓有丝分裂进程,尤其是在有丝分裂退出网络(MEN)执行时,可防止Top2缺陷。在所有条件下,遗传保护在[具体菌株]中更强;这与该突变体中的细胞生物学实验相关,据此我们观察到通过MEN和胞质分裂执行,染色质和超微后期桥均不稳定。有趣的是,虽然关键的MEN驱动因子Cdc15的短暂失活部分抑制了[具体菌株]的致死性,但当后期的早期步骤被破坏时情况并非如此;[此处可能有具体菌株名称缺失]。我们讨论了这种差异的基础,并提出加速有丝分裂进程可能是使携带[具体基因]亚效突变的癌细胞超敏化的一种治疗策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1126/5633387/88d95e3cd2fa/3379f1.jpg

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