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dUTPase activity is critical to maintain genetic stability in Saccharomyces cerevisiae

机译:dUTPase活性对于维持酿酒酵母的遗传稳定性至关重要。

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We identified a viable allele (dut1-1) of the DUT1 gene that encodes the dUTPase activity in Saccharomyces cerevisiae. The Dut1-1 protein possesses a single amino acid substitution (Gly82Ser) in a conserved motif nearby the active site and exhibits a greatly reduced dUTPase activity. The dut1-1 single mutant exhibits growth delay and cell cycle abnormalities and shows a strong spontaneous mutator phenotype. All phenotypes of the dut1-1 mutant are suppressed by the simultaneous inactivation of the uracil DNA N-glycosylase, Ung1. However, the ung1 dut1-1 double mutant accumulates uracil in its genomic DNA. The viability of the dut1-1 mutant is greatly impaired by the simultaneous inactivation of AP endonucleases. These data strongly suggest that the phenotypes of the dut1-1 mutant result from the incorporation of dUMPs into DNA subsequently converted into AP sites. The analysis of the dut1-1 strain mutation spectrum showed that cytosines are preferentially incorporated in front of AP sites in a Rev3-dependent manner during translesion synthesis. These results point to a critical role of the Dut1 protein in the maintenance of the genetic stability. Therefore, the normal cellular metabolism, and not only its byproducts, is an important source of endogenous DNA damage and genetic instability in eukaryotic cells.
机译:我们确定了在啤酒酵母中编码dUTPase活性的DUT1基因的可行等位基因(dut1-1)。 Dut1-1蛋白在活性位点附近的保守基序中具有单个氨基酸取代(Gly82Ser),并且dUTPase活性大大降低。 dut1-1单个突变体表现出生长延迟和细胞周期异常,并表现出很强的自发突变体表型。尿嘧啶DNA N-糖基化酶Ung1同时失活会抑制dut1-1突变体的所有表型。但是,ung1 dut1-1双突变体在其基因组DNA中积累了尿嘧啶。 AP核酸内切酶的同时失活大大破坏了dut1-1突变体的生存能力。这些数据强烈表明,dut1-1突变体的表型是由于将dUMP掺入到随后转化为AP位点的DNA中所致。对dut1-1菌株突变谱的分析表明,胞嘧啶在病灶合成过程中优先以Rev3依赖的方式掺入AP位点的前面。这些结果表明Dut1蛋白在维持遗传稳定性中的关键作用。因此,正常的细胞代谢,不仅是其副产物,是真核细胞内源性DNA损伤和遗传不稳定的重要来源。

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