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拓扑异构酶IIα通过两种机制防止超微末期桥的形成。

Topoisomerase IIα prevents ultrafine anaphase bridges by two mechanisms.

作者信息

Gemble Simon, Buhagiar-Labarchède Géraldine, Onclercq-Delic Rosine, Fontaine Gaëlle, Lambert Sarah, Amor-Guéret Mounira

机构信息

Institut Curie, PSL Research University, UMR 3348, Centre de Recherche, Orsay, France.

CNRS UMR 3348, Centre Universitaire, Bât. 110. 91405, Orsay, France.

出版信息

Open Biol. 2020 May;10(5):190259. doi: 10.1098/rsob.190259. Epub 2020 May 13.

DOI:10.1098/rsob.190259
PMID:32400307
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7276528/
Abstract

Topoisomerase IIα (Topo IIα), a well-conserved double-stranded DNA (dsDNA)-specific decatenase, processes dsDNA catenanes resulting from DNA replication during mitosis. Topo IIα defects lead to an accumulation of ultrafine anaphase bridges (UFBs), a type of chromosome non-disjunction. Topo IIα has been reported to resolve DNA anaphase threads, possibly accounting for the increase in UFB frequency upon Topo IIα inhibition. We hypothesized that the excess UFBs might also result, at least in part, from an impairment of the prevention of UFB formation by Topo IIα. We found that Topo IIα inhibition promotes UFB formation without affecting the global disappearance of UFBs during mitosis, but leads to an aberrant UFB resolution generating DNA damage within the next G1. Moreover, we demonstrated that Topo IIα inhibition promotes the formation of two types of UFBs depending on cell cycle phase. Topo IIα inhibition during S-phase compromises complete DNA replication, leading to the formation of UFB-containing unreplicated DNA, whereas Topo IIα inhibition during mitosis impedes DNA decatenation at metaphase-anaphase transition, leading to the formation of UFB-containing DNA catenanes. Thus, Topo IIα activity is essential to prevent UFB formation in a cell-cycle-dependent manner and to promote DNA damage-free resolution of UFBs.

摘要

拓扑异构酶IIα(Topo IIα)是一种高度保守的双链DNA(dsDNA)特异性解连环酶,在有丝分裂期间处理DNA复制产生的dsDNA连环体。Topo IIα缺陷会导致超细微后期桥(UFBs)的积累,这是一种染色体不分离类型。据报道,Topo IIα可解决DNA后期细丝问题,这可能是Topo IIα抑制后UFB频率增加的原因。我们推测,过量的UFBs至少部分可能是由于Topo IIα对UFB形成预防作用的损害所致。我们发现,Topo IIα抑制促进UFB形成,而不影响有丝分裂期间UFB的整体消失,但会导致异常的UFB解决,在下一个G1期内产生DNA损伤。此外,我们证明,根据细胞周期阶段,Topo IIα抑制会促进两种类型UFB的形成。S期Topo IIα抑制会损害DNA的完全复制,导致含UFB的未复制DNA形成,而有丝分裂期间Topo IIα抑制会阻碍中期-后期转换时的DNA解连环,导致含UFB的DNA连环体形成。因此,Topo IIα活性对于以细胞周期依赖性方式防止UFB形成以及促进UFB的无DNA损伤解决至关重要。

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Regulation of mitotic chromosome architecture and resolution of ultrafine anaphase bridges by PICH.PICH 调控有丝分裂染色体结构和解决超细线末期桥。
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Increased numbers of nucleoli in a genome-wide RNAi screen reveal proteins that link the cell cycle to RNA polymerase I transcription.在全基因组 RNAi 筛选中核仁数量的增加揭示了将细胞周期与 RNA 聚合酶 I 转录联系起来的蛋白质。
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