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Genetic analysis of the recG locus of Escherichia coli K-12 and of its role in recombination and DNA repair.

机译:大肠杆菌K-12 recG基因座的遗传分析及其在重组和DNA修复中的作用。

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摘要

We describe a transposon insertion that reduces the efficiency of homologous recombination and DNA repair in Escherichia coli. The insertion, rec-258, was located between pyrE and dgo at min 82.1 on the current linkage map. On the basis of linkage to pyrE and complementation studies with the cloned rec+ gene, rec-258 was identified as an allele of the recG locus first reported by Storm et al. (P. K. Storm, W. P. M. Hoekstra, P. G. De Haan, and C. Verhoef, Mutat. Res. 13:9-17, 1971). The recG258 mutation confers sensitivity to mitomycin C and UV light and a 3- to 10-fold deficiency in conjugational recombination in wild-type, recB recC sbcA, and recB recC sbcB sbcC genetic backgrounds. It does not appear to affect plasmid recombination in the wild-type. A recG258 single mutant is also sensitive to ionizing radiation. The SOS response is induced normally, although the basal level of expression is elevated two- to threefold. Further genetic studies revealed that recB recG and recG recJ double mutants are much more sensitive to UV light than the respective single mutants in each case. However, no synergistic interactions were discovered between recG258 and mutations in recF, recN, or recQ. It is concluded that recG does not fall within any of the accepted groups of genes that affect recombination and DNA repair.
机译:我们描述了降低大肠杆菌中同源重组和DNA修复效率的转座子插入。 rec-258插入片段位于当前连锁图上的82.1分钟处的pyrE和dgo之间。根据与pyrE的连接和与克隆rec +基因的互补性研究,rec-258被确定为暴风雨等首先报道的recG基因座的等位基因。 (P.K. Storm,W.P.M.Hoekstra,P.G.De Haan和C.Verhoef,Mutat.Res.13:9-17,1971)。 recG258突变赋予对丝裂霉素C和紫外线的敏感性,以及野生型,recB recC sbcA和recB recC sbcB sbcC遗传背景共轭重组的3至10倍缺陷。它似乎不影响野生型中的质粒重组。 recG258单个突变体也对电离辐射敏感。尽管表达的基础水平提高了两到三倍,但正常情况下会诱发SOS反应。进一步的遗传研究表明,在每种情况下,recB recG和recG recJ双重突变体对紫外线的敏感度均高于各自的单个突变体。但是,recG258和recF,recN或recQ中的突变之间未发现协同相互作用。结论是,recG不属于影响重组和DNA修复的任何可接受的基因组。

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