Carrasco B, Fernández S, Petit M A, Alonso J C
Department of Microbial Biotechnology, Centro Nacional de Biotecnología, CSIC, Campus Universidad Autónoma de Madrid, Cantoblanco, 28049 Madrid, Spain.
J Bacteriol. 2001 Oct;183(19):5772-7. doi: 10.1128/JB.183.19.5772-5777.2001.
The B. subtilis DeltahelD allele rendered cells proficient in transformational recombination and moderately sensitive to methyl methanesulfonate when present in an otherwise Rec(+) strain. The DeltahelD allele was introduced into rec-deficient strains representative of the alpha (recF strain), beta (addA addB), gamma (recH), epsilon (DeltarecU), and zeta (DeltarecS) epistatic groups. The DeltahelD mutation increased the sensitivity to DNA-damaging agents of addAB, DeltarecU, and DeltarecS cells, did not affect the survival of recH cells, and decreased the sensitivity of recF cells. DeltahelD also partially suppressed the DNA repair phenotype of other mutations classified within the alpha epistatic group, namely the recL, DeltarecO, and recR mutations. The DeltahelD allele marginally reduced plasmid transformation (three- to sevenfold) of mutations classified within the alpha, beta, and gamma epistatic groups. Altogether, these data indicate that the loss of helicase IV might stabilize recombination repair intermediates formed in the absence of recFLOR and render recFLOR, addAB, and recH cells impaired in plasmid transformation.
枯草芽孢杆菌DeltahelD等位基因在其他方面为Rec(+)的菌株中时,可使细胞在转化重组方面表现出能力,并对甲磺酸甲酯具有中度敏感性。DeltahelD等位基因被导入代表α(recF菌株)、β(addA addB)、γ(recH)、ε(DeltarecU)和ζ(DeltarecS)上位性组的rec缺陷菌株中。DeltahelD突变增加了addAB、DeltarecU和DeltarecS细胞对DNA损伤剂的敏感性,不影响recH细胞的存活,并降低了recF细胞的敏感性。DeltahelD还部分抑制了α上位性组内其他分类突变的DNA修复表型,即recL、DeltarecO和recR突变。DeltahelD等位基因略微降低了α、β和γ上位性组内分类突变的质粒转化(三至七倍)。总之,这些数据表明解旋酶IV的缺失可能会稳定在没有recFLOR的情况下形成的重组修复中间体,并使recFLOR、addAB和recH细胞在质粒转化方面受损。