首页> 美国卫生研究院文献>Journal of Bacteriology >Genetic Recombination in Bacillus subtilis 168: Effects of recU and recS Mutations on DNA Repair and Homologous Recombination
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Genetic Recombination in Bacillus subtilis 168: Effects of recU and recS Mutations on DNA Repair and Homologous Recombination

机译:枯草芽孢杆菌168中的基因重组:recU和recS突变对DNA修复和同源重组的影响

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摘要

Bacillus subtilis recombination-deficient mutants were constructed by inserting a selectable marker (cat gene) into the yppB and ypbC coding regions. The yppB:cat and ypbC:cat null alleles rendered cells sensitive to DNA-damaging agents, impaired plasmid transformation (25- and 100-fold), and moderately affected chromosomal transformation when present in an otherwise Rec+ B. subtilis strain. The yppB gene complemented the defect of the recG40 strain. yppB and ypbC and their respective null alleles were termed “recU” and “recU1” (recU:cat) and “recS” and “recS1” (recS:cat), respectively. The recU and recS mutations were introduced into rec-deficient strains representative of the α (recF), β (addA5 addB72), γ (recH342), and ɛ (recG40) epistatic groups. The recU mutation did not modify the sensitivity of recH cells to DNA-damaging agents, but it did affect inter- and intramolecular recombination in recH cells. The recS mutation did not modify the sensitivity of addAB cells to DNA-damaging agents, and it marginally affected recF, recH, and recU cells. The recS mutation markedly reduced (about 250-fold) intermolecular recombination in recH cells, and there were reductions of 10- to 20-fold in recF, addAB, and recU cells. Intramolecular recombination was blocked in recS recF, recS addAB, and recS recU cells. RecU and RecS have no functional counterparts in Escherichia coli. Altogether, these data indicate that the recU and recS proteins are required for DNA repair and intramolecular recombination and that the recF (α epistatic group), addAB (β), recH (γ), recU (ɛ), and recS genes provide overlapping activities that compensate for the effects of single mutation. We tentatively placed recS within a new group, termed “ζ.”
机译:通过将选择标记(猫基因)插入yppB和ypbC编码区,构建枯草芽孢杆菌重组缺陷型突变体。 yppB:cat和ypbC:cat无效等位基因使细胞对DNA破坏剂敏感,质粒转化受损(25倍和100倍),并以其他方式在Rec + 中存在时影响染色体转化枯草芽孢杆菌菌株。 yppB基因弥补了recG40菌株的缺陷。 yppB和ypbC以及它们各自的无效等位基因分别称为“ recU”和“ recU1”(recU: cat ),“ recS ”和“ recS1 ” ”( recS cat )。将 recU recS 突变引入代表 rec 的α( recF ),β( addA5 addB72 ),γ( recH342 )和ɛ( recG40 )上位基团。 recU 突变不会改变 recH 细胞对DNA损伤剂的敏感性,但会影响 recH 细胞中的分子间和分子内重组。 。 recS 突变不会改变 addAB 细胞对DNA破坏剂的敏感性,并且仅对 recF recH 产生影响。 em>和 recU 单元格。 recS 突变在 recH 细胞中的分子间重组显着降低(约250倍),而 recF 的分子内重组降低了10到20倍>, addAB recU 单元格。 recS recF recS addAB recS recU 细胞中的分子内重组被阻断。 RecU和RecS在大肠杆菌中没有功能对应物。总而言之,这些数据表明 recU recS 蛋白是DNA修复和分子内重组所必需的,并且 recF (α上位基团) addAB (β), recH (γ), recU (ɛ)和 recS 基因提供的重叠活性补偿单突变的影响。我们将 recS 暂时放置在一个称为“ζ”的新组中。

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