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Persistent 3′-phosphate termini and increased cytotoxicity of radiomimetic DNA double-strand breaks in cells lacking polynucleotide kinase/phosphatase despite presence of an alternative 3′-phosphatase

机译:尽管存在替代的3-磷酸酶但缺乏多核苷酸激酶/磷酸酶的细胞中持久的3-磷酸末端和放射模拟DNA双链断裂的细胞毒性增加

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摘要

Polynucleotide kinase/phosphatase (PNKP) has been implicated in non-homologous end joining (NHEJ) of DNA double-strand breaks (DSBs). To assess the consequences of PNKP deficiency for NHEJ of 3′-phosphate-ended DSBs, PNKP-deficient derivatives of HCT116 and of HeLa cells were generated using CRISPR/CAS9. For both cell lines, PNKP deficiency conferred sensitivity to ionizing radiation as well as to neocarzinostatin (NCS), which specifically induces DSBs bearing protruding 3′-phosphate termini. Moreover, NCS-induced DSBs, detected as 53BP1 foci, were more persistent in PNKP−/− HCT116 cells compared to their wild-type (WT) counterparts. Surprisingly, PNKP-deficient whole-cell and nuclear extracts were biochemically competent in removing both protruding and recessed 3′-phosphates from synthetic DSB substrates, albeit much less efficiently than WT extracts, suggesting an alternative 3′-phosphatase. Measurements by ligation-mediated PCR showed that PNKP-deficient HeLa cells contained significantly more 3′-phosphate-terminated and fewer 3′-hydroxyl-terminated DSBs than parental cells 5-15 min after NCS treatment, but this difference disappeared by 1 hour. These results suggest that, despite presence of an alternative 3′-phosphatase, loss of PNKP significantly sensitizes cells to 3′-phosphate-terminated DSBs, due to a 3′-dephosphorylation defect.
机译:多核苷酸激酶/磷酸酶(PNKP)与DNA双链断裂(DSB)的非同源末端连接(NHEJ)有关。为了评估PNKP缺乏对3'-磷酸末端DSB的NHEJ的后果,使用CRISPR / CAS9生成了HCT116和HeLa细胞的PNKP缺乏衍生物。对于这两种细胞系,PNKP缺乏症都赋予了对电离辐射以及新carcarinostatin(NCS)的敏感性,后者特别诱导了带有突出的3'-磷酸末端的DSB。而且,与野生型(WT)对应物相比,NCS诱导的DSBs在PNKP -/- HCT116细胞中具有更强的持久性,被检测为53BP1病灶。出人意料的是,缺乏PNKP的全细胞和核提取物具有生化能力,可以从合成DSB底物中去除突出的和凹入的3'-磷酸盐,尽管其效率比WT提取物低得多,这表明存在另一种3'-磷酸酶。通过连接介导的PCR的测量显示,NCS处理后5-15分钟,与亲代细胞相比,缺乏PNKP的HeLa细胞含有明显更多的3'-磷酸末端和3'-羟基末端的DSB,但这种差异在1小时后消失。这些结果表明,尽管存在替代的3'-磷酸酶,但由于3'-去磷酸化缺陷,PNKP的丧失仍使细胞对3'-磷酸末端的DSB敏感。

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