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首页> 外文期刊>Molecular and Cellular Biology >Increased Rates of Genomic Deletions Generated by Mutations in the Yeast Gene Encoding DNA Polymerase δ or by Decreases in the Cellular Levels of DNA Polymerase δ
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Increased Rates of Genomic Deletions Generated by Mutations in the Yeast Gene Encoding DNA Polymerase δ or by Decreases in the Cellular Levels of DNA Polymerase δ

机译:酵母基因编码DNA聚合酶δ突变或细胞DNA聚合酶δ水平降低产生的基因组缺失率提高。

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In Saccharomyces cerevisiae, POL3 encodes the catalytic subunit of DNA polymerase δ. While yeastPOL3 mutant strains that lack the proofreading exonuclease activity of the polymerase have a strong mutator phenotype, little is known regarding the role of other Pol3p domains in mutation avoidance. We identified a number of pol3 mutations in regions outside of the exonuclease domain that have a mutator phenotype, substantially elevating the frequency of deletions. These deletions appear to reflect an increased frequency of DNA polymerase slippage. In addition, we demonstrate that reduction in the level of wild-type DNA polymerase results in a similar mutator phenotype. Lowered levels of DNA polymerase also result in increased sensitivity to the DNA-damaging agent methyl methane sulfonate. We conclude that both the quantity and the quality of DNA polymerase δ is important in ensuring genome stability.
机译:酿酒酵母中, POL3 编码DNA聚合酶δ的催化亚基。尽管缺乏聚合酶校对性核酸外切酶活性的酵母 POL3 突变菌株具有很强的突变表型,但对于其他Pol3p结构域在避免突变中的作用知之甚少。我们在核酸外切酶域外的区域中发现了许多具有突变体表型的 pol3 突变,从而大大提高了缺失频率。这些缺失似乎反映了DNA聚合酶滑移频率的增加。另外,我们证明了野生型DNA聚合酶水平的降低会导致类似的突变体表型。 DNA聚合酶水平的降低还导致对DNA破坏剂甲烷甲磺酸甲酯的敏感性增加。我们得出结论,DNA聚合酶δ的数量和质量对确保基因组稳定性至关重要。

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