Kingsbury D T, Helinski D R
J Bacteriol. 1973 Jun;114(3):1116-24. doi: 10.1128/jb.114.3.1116-1124.1973.
An Escherichia coli mutant (polA1), defective in deoxyribonucleic acid (DNA) polymerase I, (EC 2.7.7.7) is unable to maintain colicinogenic factor E1 (ColE1), whereas several sex factor plasmids are maintained normally in this strain. polA1 mutant strains containing these sex factor plasmids do not exhibit a readily detectable plasmid-induced polymerase activity. A series of E. coli mutants that are temperature sensitive for ColE1 maintenance, but able to maintain other plasmids, were isolated and shown to fall into two phenotypic groups. Mutants in one group are defective specifically in ColE1 maintenance at 43 C, but exhibit normal DNA polymerase I activity. Mutations in the second group map in the polA gene of E. coli, and bacteria carrying these mutations are sensitive to methylmethanesulfonate (MMS). Revertants that were selected either for MMS resistance or the ability to maintain ColE1 were normal for both properties. The DNA polymerase I enzyme of two of these mutants shows a pronounced temperature sensitivity when compared to the wild-type enzyme. An examination of the role of DNA polymerase I in ColE1 maintenance indicates that it is essential for normal replication of the plasmid. In addition, the presence of a functional DNA polymerase I in both the donor and recipient cell is required for the ColV-promoted conjugal transfer of ColE1 and establishment of the plasmid in the recipient cell.
一种在脱氧核糖核酸(DNA)聚合酶I(EC 2.7.7.7)方面存在缺陷的大肠杆菌突变体(polA1)无法维持产大肠杆菌素因子E1(ColE1),而几种性因子质粒在该菌株中能正常维持。含有这些性因子质粒的polA1突变体菌株未表现出易于检测到的质粒诱导的聚合酶活性。分离出了一系列对ColE1维持温度敏感但能维持其他质粒的大肠杆菌突变体,并显示它们分为两个表型组。一组突变体在43℃时特异性地在ColE1维持方面存在缺陷,但表现出正常的DNA聚合酶I活性。第二组突变位于大肠杆菌的polA基因中,携带这些突变的细菌对甲基磺酸甲酯(MMS)敏感。为MMS抗性或维持ColE1的能力而选择的回复突变体在这两个特性方面都是正常的。与野生型酶相比,其中两个突变体的DNA聚合酶I酶表现出明显的温度敏感性。对DNA聚合酶I在ColE1维持中的作用进行的研究表明,它对于质粒的正常复制至关重要。此外,供体和受体细胞中都存在功能性DNA聚合酶I是ColE1在ColV促进的接合转移以及在受体细胞中建立质粒所必需的。