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Translocation of XRCC1 and DNA ligase IIIα from centrosomes to chromosomes in response to DNA damage in mitotic human cells

机译:XRCC1和DNA连接酶IIIα在有丝分裂人类细胞中响应DNA损伤而从中心体向染色体易位

摘要

DNA single-strand breaks (SSBs) are the most frequent lesions caused by oxidative DNA damage. They disrupt DNA replication, give rise to double-strand breaks and lead to cell death and genomic instability. It has been shown that the XRCC1 protein plays a key role in SSBs repair. We have recently shown in living human cells that XRCC1 accumulates at SSBs in a fully poly(ADP-ribose) (PAR) synthesis-dependent manner and that the accumulation of XRCC1 at SSBs is essential for further repair processes. Here, we show that XRCC1 and its partner protein, DNA ligase IIIα, localize at the centrosomes and their vicinity in metaphase cells and disappear during anaphase. Although the function of these proteins in centrosomes during metaphase is unknown, this centrosomal localization is PAR-dependent, because neither of the proteins is observed in the centrosomes in the presence of PAR polymerase inhibitors. On treatment of metaphase cells with H2O2, XRCC1 and DNA ligase IIIα translocate immediately from the centrosomes to mitotic chromosomes. These results show for the first time that the repair of SSBs is present in the early mitotic chromosomes and that there is a dynamic response of XRCC1 and DNA ligase IIIα to SSBs, in which these proteins are recruited from the centrosomes, where metaphase-dependent activation of PAR polymerase occurs, to mitotic chromosomes, by SSBs-dependent activation of PAR polymerase.
机译:DNA单链断裂(SSB)是由氧化DNA损伤引起的最常见病变。它们破坏DNA复制,引起双链断裂,并导致细胞死亡和基因组不稳定。已经显示,XRCC1蛋白在SSB修复中起关键作用。我们最近在人体细胞中显示XRCC1以完全聚(ADP-核糖)(PAR)合成依赖的方式在SSB处积累,并且XRCC1在SSB处的积累对于进一步的修复过程至关重要。在这里,我们显示XRCC1及其伴侣蛋白DNA连接酶IIIα位于中期细胞的中心体及其附近,并在后期消失。尽管这些蛋白在中期的功能不明确,但这种中心体定位是PAR依赖性的,因为在存在PAR聚合酶抑制剂的情况下,在中心体中均未观察到任何蛋白质。用H2O2处理中期细胞后,XRCC1和DNA连接酶IIIα立即从中心体转移到有丝分裂染色体。这些结果首次表明,在有丝分裂的早期染色体中存在SSB的修复,并且XRCC1和DNA连接酶IIIα对SSB具有动态响应,其中这些蛋白是从中心体募集的,这些蛋白是中期依赖性的活化通过SSBs依赖的PAR聚合酶的活化,PAR聚合酶的产生发生在有丝分裂染色体上。

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