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首页> 外文期刊>Nucleic acids research >Limiting amounts of budding yeast Rad53 S-phase checkpoint activity results in increased resistance to DNA alkylation damage
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Limiting amounts of budding yeast Rad53 S-phase checkpoint activity results in increased resistance to DNA alkylation damage

机译:酵母芽Rad53 S期检查点活性的限制数量导致对DNA烷基化损伤的抵抗力增强

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The Saccharomyces cerevisiae protein kinase Rad53 plays a key role in maintaining genomic integrity after DNA damage and is an essential component of the ‘intra-S-phase checkpoint'. In budding yeast, alkylating chemicals, such as methyl methanesulfonate (MMS), or depletion of nucleotides by hydroxyurea (HU) stall DNA replication forks and thus activate Rad53 during S-phase. This stabilizes stalled DNA replication forks and prevents the activation of later origins of DNA replication. Here, we report that a reduction in the level of Rad53 kinase causes cells to behave very differently in response to DNA alkylation or to nucleotide depletion. While cells lacking Rad53 are unable to activate the checkpoint response to HU or MMS, so that they rapidly lose viability, a reduction in Rad53 enhances cell survival only after DNA alkylation. This reduction in the level of Rad53 allows S-phase cells to maintain the stability of DNA replication forks upon MMS treatment, but does not prevent the collapse of forks in HU. Our results may have important implications for cancer therapies, as they suggest that partial impairment of the S-phase checkpoint Rad53/Chk2 kinase provides cells with a growth advantage in the presence of drugs that damage DNA.
机译:酿酒酵母蛋白激酶Rad53在DNA损伤后在维持基因组完整性方面起着关键作用,并且是“ S阶段内关卡”的重要组成部分。在发芽酵母中,烷基化化学物质(例如甲磺酸甲酯(MMS))或羟基脲(HU)对核苷酸的消耗使DNA复制叉停滞,从而在S期激活Rad53。这样可以稳定停滞的DNA复制叉,并防止后来的DNA复制起点被激活。在这里,我们报告说Rad53激酶水平的降低会导致细胞在响应DNA烷基化或核苷酸耗竭方面表现出很大差异。尽管缺少Rad53的细胞无法激活对HU或MMS的检查点反应,因此它们迅速丧失了生存能力,但Rad53的减少仅在DNA烷基化后才能提高细胞存活率。 Rad53水平的降低使S期细胞在MMS处理后能够维持DNA复制叉的稳定性,但不能防止HU中叉的塌陷。我们的结果可能对癌症治疗具有重要意义,因为它们表明S期检查点Rad53 / Chk2激酶的部分损伤为细胞提供了在损害DNA的药物存在下的生长优势。

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