首页> 外文期刊>Current Genetics: Eukaryotes with Emphasis on Yeasts, Fungi, Mitochondria, Plastids >Evaluation of the roles of Pol zeta and NHEJ in starvation-associated spontaneous mutagenesis in the yeast Saccharomyces cerevisiae.
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Evaluation of the roles of Pol zeta and NHEJ in starvation-associated spontaneous mutagenesis in the yeast Saccharomyces cerevisiae.

机译:评价波尔特Zeta和NHEJ在酿酒酵母中与饥​​饿相关的自发诱变中的作用。

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摘要

The vast majority of microorganisms live under starvation-associated stress conditions that cause mutagenesis despite the limitation of DNA replication and cell division. In this study, we compared the roles of polymerase zeta (Pol zeta) and non-homologous DNA-end joining (NHEJ) in starvation-associated spontaneous base substitutions and frameshifts, using yeast mutants carrying deletions of REV3 (encoding the catalytic subunit of Pol zeta), YKU80 (encoding a protein involved in the initiation of NHEJ), or both genes. We found that approximately 50% of starvation-associated spontaneous frameshifts and 40% of base substitutions required NHEJ to occur. The role of Pol zeta was only slightly less pronounced, with 30-40% of frameshifts and 35-45% of base substitutions being dependent on Rev3. In comparison with the single mutants, the rev3 yku80 double mutant showed an additive decrease in the level of both base substitutions and frameshifts, indicating that Pol zeta and NHEJ function independently in starvation-associated mutagenesis. Our results also imply that about 30% of starvation-associated base substitutions and frameshifts arise by some unknown mechanism that does not involve Pol zeta or NHEJ.
机译:尽管DNA复制和细胞分裂受到限制,但绝大多数微生物都生活在饥饿相关的压力条件下,该条件会引起诱变。在这项研究中,我们使用携带REV3缺失的酵母突变体(编码Pol的催化亚基),比较了聚合酶zeta(Pol zeta)和非同源DNA末端连接(NHEJ)在饥饿相关的自发碱基取代和移码中的作用。 Zeta),YKU80(编码参与NHEJ起始的蛋白质)或两个基因。我们发现,与饥饿相关的自发移码和大约40%的碱基取代需要NHEJ发生。 Pol zeta的作用仅稍微不那么明显,其中30-40%的移码和35-45%的碱基取代取决于Rev3。与单突变体相比,rev3 yku80双突变体显示碱基取代和移码水平的加和降低,表明Pol zeta和NHEJ在饥饿相关的诱变中独立起作用。我们的研究结果还暗示,约有30%的饥饿相关碱基取代和移码是由一些不涉及Pol zeta或NHEJ的未知机制引起的。

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