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DNA replication stress in CHK1-depleted tumour cells triggers premature (S-phase) mitosis through inappropriate activation of Aurora kinase B

机译:耗尽CHK1的肿瘤细胞中的DNA复制压​​力通过不适当的Aurora激酶B激活触发过早(S期)有丝分裂

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The disruption of DNA replication in cells triggers checkpoint responses that slow-down S-phase progression and protect replication fork integrity. These checkpoints are also determinants of cell fate and can help maintain cell viability or trigger cell death pathways. CHK1 has a pivotal role in such S-phase responses. It helps maintain fork integrity during replication stress and protects cells from several catastrophic fates including premature mitosis, premature chromosome condensation and apoptosis. Here we investigated the role of CHK1 in protecting cancer cells from premature mitosis and apoptosis. We show that premature mitosis (characterized by the induction of histone H3 phosphorylation, aberrant chromatin condensation, and persistent RPA foci in arrested S-phase cells) is induced in p53-deficient tumour cells depleted of CHK1 when DNA synthesis is disrupted. These events are accompanied by an activation of Aurora kinase B in S-phase cells that is essential for histone H3 Ser10 phosphorylation. Histone H3 phosphorylation precedes the induction of apoptosis in p53?/? tumour cell lines but does not appear to be required for this fate as an Aurora kinase inhibitor suppresses phosphorylation of both Aurora B and histone H3 but has little effect on cell death. In contrast, only a small fraction of p53+/+ tumour cells shows this premature mitotic response, although they undergo a more rapid and robust apoptotic response. Taken together, our results suggest a novel role for CHK1 in the control of Aurora B activation during DNA replication stress and support the idea that premature mitosis is a distinct cell fate triggered by the disruption of DNA replication when CHK1 function is suppressed.
机译:细胞中DNA复制的中断会触发检查点响应,从而减慢S期进程并保护复制叉的完整性。这些检查点也是细胞命运的决定因素,可以帮助维持细胞活力或触发细胞死亡途径。 CHK1在此类S相响应中起着关键作用。它有助于在复制压力期间维持叉子的完整性,并保护细胞免受多种灾难性命运的影响,包括过早的有丝分裂,过早的染色体凝结和凋亡。在这里,我们研究了CHK1在保护癌细胞免受过早有丝分裂和凋亡中的作用。我们显示过早有丝分裂(表征为组蛋白H3磷酸化,染色质异常凝集和SPA期细胞中持久性RPA病灶的诱导)在DNA合成受到破坏的p53缺乏肿瘤细胞中被诱导。这些事件伴随着S期细胞中Aurora激酶B的激活,这对于组蛋白H3 Ser10磷酸化至关重要。组蛋白H3磷酸化先于p53α/β细胞凋亡的诱导。肿瘤细胞系,但似乎并非必需,因为Aurora激酶抑制剂可抑制Aurora B和组蛋白H3的磷酸化,但对细胞死亡的影响很小。相比之下,尽管一小部分的p53 + / +肿瘤细胞经历了更快,更强的凋亡反应,但仍显示出这种过早的有丝分裂反应。两者合计,我们的结果表明CHK1在DNA复制压​​力期间控制Aurora B激活中具有新作用,并支持以下观点:当CHK1功能受到抑制时,过早有丝分裂是由DNA复制中断引起的独特细胞命运。

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