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Dna2 Helicase/Nuclease Causes Replicative Fork Stalling and Double-strand Breaks in the Ribosomal DNA of Saccharomyces cerevisiae

机译:Dna2解旋酶/核酸酶导致酿酒酵母核糖体DNA中的复制叉停转和双链断裂。

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摘要

We have proposed that faulty processing of arrested replication forks leads to increases in recombination and chromosome instability in Saccharomyces cerevisiae and contributes to the shortened lifespan of dna2 mutants. Now we use the ribosomal DNA locus, which is a good model for all stages of DNA replication, to test this hypothesis. We show directly that DNA replication pausing at the ribosomal DNA replication fork barrier (RFB) is accompanied by the occurrence of double-strand breaks near the RFB. Both pausing and breakage are elevated in the early aging, hypomorphic dna2-2 helicase mutant. Deletion of FOB1, encoding the fork barrier protein, suppresses the elevated pausing and DSB formation, and represses initiation at rDNA ARSs. The dna2-2 mutation is synthetically lethal with {Delta}rrm3, encoding another DNA helicase involved in rDNA replication. It does not appear to be the case that the rDNA is the only determinant of genome stability during the yeast lifespan however since strains carrying deletion of all chromosomal rDNA but with all rDNA supplied on a plasmid, have decreased rather than increased lifespan. We conclude that the replication-associated defects that we can measure in the rDNA are symbolic of similar events occurring either stochastically throughout the genome or at other regions where replication forks move slowly or stall, such as telomeres, centromeres, or replication slow zones.
机译:我们已经提出,被阻滞的复制叉的错误加工会导致酿酒酵母中重组和染色体不稳定的增加,并导致dna2突变体的寿命缩短。现在,我们使用核糖体DNA基因座(该基因座是DNA复制所有阶段的良好模型)来检验该假设。我们直接显示在核糖体DNA复制叉屏障(RFB)处发生的DNA复制暂停伴随着RFB附近双链断裂的发生。在早期老化的亚同型dna2-2解旋酶突变体中,暂停和断裂都增加。编码叉状屏障蛋白的FOB1的缺失抑制了升高的停顿和DSB的形成,并抑制了rDNA ARS的启动。 dna2-2突变对Δrrm3具有合成致死性,它编码参与rDNA复制的另一种DNA解旋酶。 rDNA似乎并不是决定酵母寿命期间基因组稳定性的唯一决定因素,但是由于携带所有染色体rDNA缺失但质粒上提供了所有rDNA的菌株的寿命降低了,而不是增加了。我们得出的结论是,我们可以在rDNA中测量的与复制相关的缺陷是整个基因组中随机发生或在复制叉缓慢移动或停滞的其他区域(例如端粒,着丝粒或复制缓慢区域)发生的类似事件的象征。

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