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A balanced pyrimidine pool is required for optimal Chk1 activation to prevent ultrafine anaphase bridge formation

机译:需要平衡的嘧啶池以实现最佳的Chk1激活,以防止形成超细的后期桥

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摘要

Cytidine deaminase (CDA) deficiency induces an excess of cellular dCTP, which reduces basal PARP-1 activity, thereby compromising complete DNA replication, leading to ultrafine anaphase bridge (UFB) formation. CDA dysfunction has pathological implications, notably in cancer and in Bloom syndrome. It remains unknown how reduced levels of PARP-1 activity and pyrimidine pool imbalance lead to the accumulation of unreplicated DNA during mitosis. We report that a decrease in PARP-1 activity in CDA-deficient cells impairs DNA-damage-induced Chk1 activation, and, thus, the downstream checkpoints. Chemical inhibition of the ATR-Chk1 pathway leads to UFB accumulation, and we found that this pathway was compromised in CDA-deficient cells. Our data demonstrate that ATR-Chk1 acts downstream from PARP-1, preventing the accumulation of unreplicated DNA in mitosis, and, thus, UFB formation. Finally, delaying entry into mitosis is sufficient to prevent UFB formation in both CDA-deficient and CDA-proficient cells, suggesting that both physiological and pathological UFBs are derived from unreplicated DNA. Our findings demonstrate an unsuspected requirement for a balanced nucleotide pool for optimal Chk1 activation both in unchallenged cells and in response to genotoxic stress.
机译:胞嘧啶脱氨酶(CDA)缺乏会导致细胞dCTP过量,从而降低基础PARP-1活性,从而损害完整的DNA复制,从而导致超细后期桥(UFB)的形成。 CDA功能障碍具有病理学意义,特别是在癌症和Bloom综合征中。降低PARP-1活性水平和嘧啶库失衡水平如何导致有丝分裂期间未复制的DNA积累是未知的。我们报告说,在CDA缺陷型细胞中PARP-1活性的降低会损害DNA损伤诱导的Chk1激活,并因此降低下游检查点。对ATR-Chk1途径的化学抑制导致UFB积累,我们发现该途径在CDA缺陷细胞中受损。我们的数据表明,ATR-Chk1在PARP-1的下游起作用,防止有丝分裂中未复制的DNA积累,从而阻止UFB的形成。最后,延迟进入有丝分裂足以阻止CDA缺陷型和CDA缺陷型细胞中UFB的形成,这表明生理和病理UFB均源自未复制的DNA。我们的发现表明,对于未受挑战的细胞以及对遗传毒性应激的最佳Chk1激活,平衡核苷酸池的需求毫无疑问。

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