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首页> 外文期刊>Journal of Cell Science >Cell cycle arrest at the initiation step of human chromosomal DNA replication causes DNA damage.
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Cell cycle arrest at the initiation step of human chromosomal DNA replication causes DNA damage.

机译:在人类染色体DNA复制起始步骤的细胞周期停滞导致DNA损伤。

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摘要

Cell cycle arrest in response to environmental effects can lead to DNA breaks. We investigated whether inhibition of DNA replication during the initiation step can lead to DNA damage and characterised a cell-cycle-arrest point at the replication initiation step before the establishment of active replication forks. This arrest can be elicited by the iron chelators mimosine, ciclopirox olamine or 2,2'-bipyridyl, and can be reversed by the removal of the drugs or the addition of excess iron. Iron depletion induces DNA double-strand breaks in treated cells, and activates a DNA damage response that results in focal phosphorylation of histone H2AX, focal accumulation of replication protein A (RPA) and ATR (ATM and Rad3-related kinase), and activation of CHK1 kinase. Abrogation of the checkpoint response does not abolish the cell cycle arrest before the establishment of active DNA replication forks. DNA breaks appear concomitantly with the arrival of cells at the arrest point and persist upon release from thecell cycle block. We conclude that DNA double-strand breaks are the consequence, and not the cause, of cell cycle arrest during the initiation step of DNA replication by iron chelation.
机译:对环境影响的细胞周期停滞可能导致DNA断裂。我们调查了在起始步骤中抑制DNA复制是否会导致DNA损伤,并在建立主动复制叉之前在复制起始步骤中表征了细胞周期的阻滞点。可以通过铁螯合剂含羞草,环吡酮醇胺或2,2'-联吡啶来引起这种逮捕,并且可以通过去除药物或添加过量的铁来逆转。铁耗竭诱导处理过的细胞中的DNA双链断裂,并激活DNA损伤反应,从而导致组蛋白H2AX的局部磷酸化,复制蛋白A(RPA)和ATR(ATM和Rad3相关的激酶)的局部蓄积,以及活化CHK1激酶。在建立活跃的DNA复制叉之前,取消检查点响应不会消除细胞周期停滞。 DNA断裂伴随细胞到达停滞点而出现,并在从细胞周期阻滞释放时持续存在。我们得出结论,DNA双链断裂是在铁螯合复制DNA的起始步骤中,细胞周期停滞的结果,而不是原因。

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