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CDC7/DBF4 functions in the translesion synthesis branch of the RAD6 epistasis group in Saccharomyces cerevisiae.

机译:CDC7 / DBF4在酿酒酵母中RAD6上位基团的跨病变合成分支中起作用。

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摘要

CDC7 and DBF4 encode the essential Cdc7-Dbf4 protein kinase required for DNA replication in eukaryotes from yeast to human. Cdc7-Dbf4 is also required for DNA damage-induced mutagenesis, one of several postreplicational DNA damage tolerance mechanisms mediated by the RAD6 epistasis group. Several genes have been determined to function in separate branches within this group, including RAD5, REV3/REV7 (Pol zeta), RAD30 (Pol eta), and POL30 (PCNA). An extensive genetic analysis of the interactions between CDC7 and REV3, RAD30, RAD5, or POL30 in response to DNA damage was done to determine its role in the RAD6 pathway. CDC7, RAD5, POL30, and RAD30 were found to constitute four separate branches of the RAD6 epistasis group in response to UV and MMS exposure. CDC7 is also shown to function separately from REV3 in response to MMS. However, they belong in the same pathway in response to UV. We propose that the Cdc7-Dbf4 kinase associates with components of the translesion synthesis pathway and that this interaction is dependent upon the type of DNA damage. Finally, activation of the DNA damage checkpoint and the resulting cell cycle delay is intact in cdc7Delta mcm5-bob1 cells, suggesting a direct role for CDC7 in DNA repair/damage tolerance.
机译:CDC7和DBF4编码从酵母到人的真核生物中DNA复制所需的基本Cdc7-Dbf4蛋白激酶。 Cdc7-Dbf4也是DNA损伤诱导诱变所必需的,诱变是RAD6上位基因组介导的几种复制后DNA损伤耐受机制之一。已经确定了几个基因在该组的单独分支中起作用,包括RAD5,REV3 / REV7(Pol zeta),RAD30(Pol eta)和POL30(PCNA)。对CDC7和REV3,RAD30,RAD5或POL30对DNA损伤的相互作用进行了广泛的遗传分析,以确定其在RAD6途径中的作用。发现CDC7,RAD5,POL30和RAD30响应于UV和MMS暴露,构成RAD6上位性组的四个独立分支。响应于MMS,还显示了CDC7与REV3分开工作。但是,它们对紫外线的反应属于同一途径。我们建议,Cdc7-Dbf4激酶与病变合成途径的组成部分相关联,并且这种相互作用取决于DNA损伤的类型。最后,在cdc7Delta mcm5-bob1细胞中,DNA损伤检查点的激活和所导致的细胞周期延迟完好无损,表明CDC7在DNA修复/损伤耐受中具有直接作用。

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