首页> 外文期刊>Nucleic acids research >Expression of the E.coli ada gene in S.cerevisiae provides cellular resistance to /V-methyl-A/'-nitro-A/-nitrosoguanidine in rad6 but not in rad52 mutants
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Expression of the E.coli ada gene in S.cerevisiae provides cellular resistance to /V-methyl-A/'-nitro-A/-nitrosoguanidine in rad6 but not in rad52 mutants

机译:大肠杆菌ada基因在酿酒酵母中的表达为rad6突变体提供了对/ V-甲基-A /'-硝基-A /-亚硝基胍的细胞抗性,但在rad52突变体中则没有

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The Escherichla coll ada gene protein coding region under the control of the yeast alcohol dehydrogenase promoter In the extrachromosomally replicating yeast expression vectors pADHO6C and pvT103LO6C was Introduced Into the wild-type yeast strains, YNN-27 and FF-18733, and the repair deficient mutants LN-1 (rad1-1), W-5 (rad6-1), C5-6 (rad52-1) and FF-18742 (rad52::URA3). This resulted In the expression of 3950, 1900, 1870, 1620, 1320 and 1420 fmol acto-encoded ATase/mg protein respectively: transformation with the parent vectors resulted in ATase activities of 3-17 fmol/mg protein. The wild-types, radi-1 and rad6-1 yeast expressing the bacterial ATase showed Increased resistance to the toxic and mutagenic effects of N-methyi-W-nltro-W-nltrosoguanidlne (MNNG). Expression of ATase In the rad52-1 and rad52::URA3 mutants neither complemented their sensitivity, nor reduced the mutagenic effects of this agent. These results suggest that whilst a portion of the toxic and mutagenic lesions Induced by MNNG can be repaired in yeast by the E.coli Ada protein in a RAD1- and AAD6-lndependent manner, the RAD52 gene product may be essential for the complete functioning of the Ada ATase. This Is the first suggestion of a possible cofactor requirement for ATase.
机译:酵母醇脱氢酶启动子控制下的Escherichla coll ada基因蛋白编码区在染色体外复制的酵母表达载体pADHO6C和pvT103LO6C被引入野生型酵母菌株YNN-27和FF-18733,以及修复缺陷型突变体LN-1(rad1-1),W-5(rad6-1),C5-6(rad52-1)和FF-18742(rad52 :: URA3)。这导致分别表达3950、1900、1870、1620、1320和1420 fmol肌动蛋白编码的ATase / mg蛋白:用亲本载体转化后,ATase活性为3-17 fmol / mg蛋白。表达细菌ATase的野生型radi-1和rad6-1酵母菌显示出对N-甲基-W-硝基-W-硝基鸟嘌呤(MNNG)的毒性和诱变作用的抗性增强。在rad52-1和rad52 :: URA3突变体中ATase的表达既不补充其敏感性,也不降低该试剂的诱变作用。这些结果表明,虽然MNNG诱导的部分毒性和诱变性损伤可以通过大肠杆菌Ada蛋白以独立于RAD1和AAD6的方式在酵母中修复,但RAD52基因产物可能对必需的完整功能至关重要。 Ada ATase。这是ATase可能需要辅因子的第一个建议。

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