Brozmanová J, Vlcková V, Farkasová E, Dudás A, Vlasáková D, Chovanec M, Mikulovská Z, Fridrichová I, Saffi J, Henriques J A
Department of Molecular Genetics, Cancer Research Institute, Slovak Academy of Sciences, Bratislava.
Mutat Res. 2001 May 10;485(4):345-55. doi: 10.1016/s0921-8777(01)00070-2.
Escherichia coli endonuclease III (endo III) is the key repair enzyme essential for removal of oxidized pyrimidines and abasic sites. Although two homologues of endo III, Ntgl and Ntg2, were found in Saccharomyces cerevisiae, they do not significantly contribute to repair of oxidative DNA damage in vivo. This suggests that an additional activity(ies) or a regulatory pathway(s) involved in cellular response to oxidative DNA damage may exist in yeast. The pso3-1 mutant of S. cerevisiae was previously shown to be specifically sensitive to toxic effects of hydrogen peroxide (H2O2) and paraquat. Here, we show that increased DNA double strand breakage is very likely the basis of sensitivity of the pso3-1 mutant cells to H2O2. Our results, thus, indicate an involvement of the Pso3 protein in protection of yeast cells from oxidative stress presumably through its ability to prevent DNA double strand breakage. Furthermore, complementation of the repair defects of the pso3-1 mutant cells by E. coli endo III has been examined. It has been found that expression of the nth gene in the pso3-1 mutant cells recovers survival, decreases mutability and protects yeast genomic DNA from breakage following H2O2 treatment. This might suggest some degree of functional similarity between Pso3 and Nth.
大肠杆菌内切核酸酶III(内切酶III)是去除氧化嘧啶和无碱基位点所必需的关键修复酶。尽管在酿酒酵母中发现了内切酶III的两个同源物Ntgl和Ntg2,但它们对体内氧化性DNA损伤的修复没有显著贡献。这表明酵母中可能存在参与细胞对氧化性DNA损伤反应的其他活性或调节途径。酿酒酵母的pso3-1突变体先前已被证明对过氧化氢(H2O2)和百草枯的毒性作用具有特异性敏感性。在这里,我们表明DNA双链断裂增加很可能是pso3-1突变体细胞对H2O2敏感的基础。因此,我们的结果表明Pso3蛋白可能通过其防止DNA双链断裂的能力参与保护酵母细胞免受氧化应激。此外,还研究了用大肠杆菌内切酶III对pso3-1突变体细胞的修复缺陷进行互补。已发现pso3-1突变体细胞中nth基因的表达可恢复存活率、降低突变率并保护酵母基因组DNA在H2O2处理后不被断裂。这可能表明Pso3和Nth之间存在一定程度的功能相似性。