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Colloquium Paper: Links between replication and recombination in Saccharomyces cerevisiae: A hypersensitive requirement for homologous recombination in the absence of Rad27 activity

机译:专题讨论会:酿酒酵母中复制与重组之间的联系:在没有Rad27活性的情况下对同源重组的超敏要求

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摘要

The RAD27 gene of Saccharomyces cerevisiae encodes a 5′-3′ flap exo/endonuclease, which plays an important role during DNA replication for Okazaki fragment maturation. Genetic studies have shown that RAD27 is not essential for growth, although rad27Δ mutants are temperature sensitive. Moreover, they exhibit increased sensitivity to alkylating agents, enhanced spontaneous recombination, and repetitive DNA instability. The conditional lethality conferred by the rad27Δ mutation indicates that other nuclease(s) can compensate for the absence of Rad27. Indeed, biochemical and genetical analyses indicate that Okazaki fragment processing can be assured by other enzymatic activities or by alternative pathways such as homologous recombination. Here we present the results of a screen that makes use of a synthetic lethality assay to identify functions required for the survival of rad27Δ strains. Altogether, we confirm that all genes of the Rad52 recombinational repair pathway are required for the survival of rad27Δ strains at both permissive (23°C) and semipermissive (30°C) temperatures for growth. We also find that several point mutations that confer weaker phenotypes in mitotic than in meiotic cells (rad50S, mre11s) and additional gene deletions (com1/sae2, srs2) exhibit synthetic lethality with rad27Δ and that rad59Δ exhibits synergistic effects with rad27Δ. This and previous studies indicate that homologous recombination is the primary, but not only, pathway that functions to bypass the replication defects that arise in the absence of the Rad27 protein.
机译:啤酒酵母的RAD27基因编码5'-3'襟翼外切/内切核酸酶,在冈崎片段成熟的DNA复制过程中起着重要作用。遗传研究表明,RAD27对生长不是必需的,尽管rad27Δ突变体对温度敏感。而且,它们显示出对烷基化剂的增加的敏感性,增强的自发重组和重复的DNA不稳定性。 rad27Δ突变赋予的条件杀伤力表明其他核酸酶可以弥补Rad27的缺失。实际上,生化和遗传分析表明,冈崎片段加工可通过其他酶促活性或其他途径(例如同源重组)来确保。在这里,我们介绍了利用合成杀伤力测定法来鉴定rad27Δ菌株存活所需功能的筛选结果。总而言之,我们确认Rad52重组修复途径的所有基因都是rad27Δ菌株在允许(23°C)和半允许(30°C)的温度下生长所必需的。我们还发现,一些点突变在有丝分裂中的表型比减数分裂细胞(rad50S,mre11s)弱,另外的基因缺失(com1 / sae2,srs2)与rad27Δ表现出合成杀伤力,而rad59Δ与r​​ad27Δ表现出协同作用。该研究和以前的研究表明,同源重组是主要途径,但不仅是途径,其功能是绕过在缺少Rad27蛋白时出现的复制缺陷。

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