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Diminished origin-licensing capacity specifically sensitizes tumor cells to replication stress

机译:原产地许可能力下降特别使肿瘤细胞对复制压力敏感

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Previous studies have shown that dormant licensed replication origins can be exploited to enhance recovery from replication stress. Since tumor cells express high levels of origin-licensing proteins, we examined whether depletion of such factors might specifically sensitize tumor versus nontumor cells. Consistent with previous findings, we observed that three tumor-derived cell lines overexpress ORC1, a licensing component, compared with four nontumor cell lines and that a greater level of ORC1 was required to maintain viability in the tumor cells. We determined siRNA-mediated knockdown conditions for each line that maximally reduced ORC1 but did not impact upon viability, which we considered would optimally deplete dormant origins. ORC1 depletion hypersensitized the tumor-derived cells to hydroxyurea and H2O 2 but did not affect the sensitivity of the nontumor lines. Similar results were observed following depletion of ORC6 or CDC6. Furthermore, codepletion of p53 and ORC1 modestly impaired viability of 1BR3hTERT nontumor fibroblasts and more dramatically caused hypersensitivity to hydroxyurea. Finally, overexpression of the c-Myc oncogene combined with ORC1 depletion in nontumor BJhTERT cells diminished viability. Collectively, these findings suggest that tumor cells may have a reliance on origin-licensing capacity, suggesting that licensing factors could represent a target for drug-based cancer therapy.
机译:先前的研究表明,可以利用休眠的许可复制起点来增强从复制压力中的恢复。由于肿瘤细胞表达高水平的来源许可蛋白,因此我们检查了这些因子的耗竭是否可能特异性地使肿瘤细胞对非肿瘤细胞敏感。与以前的发现一致,我们观察到与四种非肿瘤细胞系相比,三种肿瘤来源的细胞系过表达ORC1(一种许可成分),并且需要更高水平的ORC1来维持肿瘤细胞的活力。我们确定了每条线的siRNA介导的敲除条件,该条件可最大程度地降低ORC1,但不影响生存能力,我们认为这将最佳地耗尽休眠来源。 ORC1耗竭使肿瘤细胞对羟基脲和H2O 2过敏,但不影响非肿瘤细胞系的敏感性。耗尽ORC6或CDC6后,观察到相似的结果。此外,p53和ORC1的代码缺失适度损害了1BR3hTERT非肿瘤成纤维细胞的生存能力,并更显着地引起了对羟基脲的超敏反应。最后,在非肿瘤BJhTERT细胞中c-Myc癌基因的过度表达与ORC1耗竭相结合,降低了生存能力。总的来说,这些发现表明肿瘤细胞可能依赖于来源许可能力,这表明许可因素可以代表基于药物的癌症治疗的目标。

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