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Mutator Phenotype Induced by Aberrant Replication

机译:异常复制诱导的突变体表型

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We have identified thermosensitive mutants of fiveSchizosaccharomyces pombe replication proteins that have a mutator phenotype at their semipermissive temperatures. Allele-specific mutants of DNA polymerase δ (polδ) and mutants of Polα, two Polδ subunits, and ligase exhibited increased rates of deletion of sequences flanked by short direct repeats. Deletion of rad2 +, which encodes a nuclease involved in processing Okazaki fragments, caused an increased rate of duplication of sequences flanked by short direct repeats. The deletion mutation rates of all the thermosensitive replication mutators decreased in a rad2Δ background, suggesting that deletion formation requires Rad2 function. The duplication mutation rate ofrad2Δ was also reduced in a thermosensitive polymerase background, but not in a ligase mutator background, which suggests that formation of duplication mutations requires normal DNA polymerization. Thus, although the deletion and duplication mutator phenotypes are distinct, their mutational mechanisms are interdependent. The deletion and duplication replication mutators all exhibited decreased viability in combination with deletion of a checkpoint Rad protein, Rad26. Interestingly, deletion of Cds1, a protein kinase functioning in a checkpoint Rad-mediated reversible S-phase arrest pathway, decreased the viability and exacerbated the mutation rate only in the thermosensitive deletion replication mutators but had no effect on rad2Δ. These findings suggest that aberrant replication caused by allele-specific mutations of these replication proteins can accumulate potentially mutagenic DNA structures. The checkpoint Rad-mediated pathways monitor and signal the aberrant replication in both the deletion and duplication mutators, while Cds1 mediates recovery from aberrant replication and prevents formation of deletion mutations specifically in the thermosensitive deletion replication mutators.
机译:我们已经鉴定了五个裂殖酵母复制蛋白的热敏突变体,它们在半容许温度下具有突变体表型。 DNA聚合酶δ(polδ)的等位基因特异性突变体和Polα,两个Polδ亚基和连接酶的突变体表现出增加的缺失率,该缺失的侧翼是短的直接重复。编码涉及加工冈崎片段的核酸酶的 rad2 + 的缺失导致侧接短直重复的序列重复率增加。在 rad2 Δ背景下,所有热敏复制突变体的缺失突变率均降低,表明缺失形成需要Rad2功能。在热敏聚合酶背景下, rad2 Δ的重复突变率也降低了,但在连接酶突变体背景下却没有降低,这表明重复突变的形成需要正常的DNA聚合。因此,尽管缺失和复制突变体表型是不同的,但它们的突变机制是相互依存的。缺失和复制复制突变体与检查点Rad蛋白Rad26的缺失结合均显示出降低的生存力。有趣的是,仅在热点删除复制突变体中,在检查点Rad介导的可逆S期阻滞途径中起作用的蛋白激酶Cds1的缺失降低了活力,并加剧了突变率,但对 rad2 Δ。这些发现表明,由这些复制蛋白的等位基因特异性突变引起的异常复制可以积累潜在的诱变DNA结构。检查点Rad介导的途径在缺失和复制突变体中监视并发信号通知异常复制,而Cds1介导从异常复制中恢复,并专门防止在热敏缺失复制突变体中形成缺失突变。

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