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Base Excision Repair of Oxidative DNA Damage in a Catalase-deficient Mutant of Schizosaccharomyces pombe

机译:粟酒裂殖酵母过氧化氢酶缺陷型突变体中氧化性DNA损伤的碱基切除修复

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References(35) Cited-By(3) Base excision repair (BER) is the major pathway to repair oxidized bases in many organisms, but the BER mutants of Schizosaccharomyces pombe are substantially resistant to hydrogen peroxide. To reduce the reactive oxygen species (ROS) scavenging activity in cells, we disrupted a catalase gene, ctt1, in S. pombe. The ctt1 mutant became sensitive to hydrogen peroxide, but had no mutator phenotype. Deletion of the BER genes (nth1, apn1, apn2, or uve1) from ctt1 mutant further increased the hydrogen peroxide sensitivity, indicating that the catalase activity obscures the functions of BER enzymes in vivo. The nth1 and apn2 mutants exhibited a moderate mutator phenotype. Double mutants in both ctt1 and BER genes showed extremely high spontaneous mutation rates, especially in the ctt1th1 mutant. Vitamin C relieved the mutator phenotype of the ctt1th1 mutant. The ctt1/apn1 and ctt1/uve1 mutants also had high mutation rates, even though each single mutant showed no mutator phenotype. Our results provide evidences that BER enzymes as well as calatase and antioxidant contribute in vivo to avoidance of ROS-induced mutagenesis and cell death.
机译:参考文献(35)Cited-By(3)碱基切除修复(BER)是修复许多生物中氧化碱基的主要途径,但粟酒裂殖酵母的BER突变体对过氧化氢具有实质性的抵抗力。为了减少细胞中的活性氧(ROS)清除活性,我们破坏了粟酒裂殖酵母中的过氧化氢酶基因ctt1。 ctt1突变体对过氧化氢敏感,但没有突变体表型。从ctt1突变体中删除BER基因(nth1,apn1,apn2或uve1)进一步增加了过氧化氢的敏感性,表明过氧化氢酶活性掩盖了BER酶在体内的功能。 nth1和apn2突变体表现出中等突变体表型。 ctt1和BER基因中的双突变体均表现出极高的自发突变率,尤其是在ctt1 / nth1突变体中。维生素C减轻了ctt1 / nth1突变体的突变体表型。 ctt1 / apn1和ctt1 / uve1突变体也具有较高的突变率,即使每个单个突变体均未显示突变体表型。我们的结果提供了证据,即BER酶以及过氧化氢酶和抗氧化剂在体内有助于避免ROS引起的诱变和细胞死亡。

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