Strauss B S, Roberts R, Francis L, Pouryazdanparast P
Department of Molecular Genetics and Cell Biology, The University of Chicago, Chicago, Illinois 60637, USA.
J Bacteriol. 2000 Dec;182(23):6742-50. doi: 10.1128/JB.182.23.6742-6750.2000.
We isolated several new mutator mutations of the Escherichia coli replicative polymerase dnaE subunit alpha and used them and a previously reported dnaE mutation to study spontaneous frameshift and base substitution mutations. Two of these dnaE strains produce many more mutants when grown on rich (Luria-Bertani) than on minimal medium. A differential effect of the medium was not observed when these dnaE mutations were combined with a mismatch repair mutation. The selection scheme for the dnaE mutations required that they be able to complement a temperature-sensitive strain. However, the ability to complement is not related to the mutator effect for at least one of the mutants. Comparison of the mutation rates for frameshift and base substitution mutations in mutS and dnaE mutS strains suggests that the mismatch repair proteins respond differently to the two types of change. Deletion of dinB from both chromosome and plasmid resulted in a four- to fivefold decrease in the rate of frameshift and base substitution mutations in a dnaE mutS double mutant background. This reduction indicates that most mistakes in replication occur as a result of the action of the auxiliary rather than the replicative polymerase in this dnaE mutant. Deletion of dinB from strains carrying a wild-type dnaE had a measurable effect, suggesting that a fraction of spontaneous mutations occur as a result of dinB polymerase action even in cells with a normal replicative polymerase.
我们分离出了大肠杆菌复制性聚合酶dnaE亚基α的几个新的突变子突变,并利用它们以及之前报道的一个dnaE突变来研究自发移码突变和碱基替换突变。其中两个dnaE菌株在丰富培养基(Luria-Bertani培养基)上生长时产生的突变体比在基本培养基上多得多。当这些dnaE突变与错配修复突变结合时,未观察到培养基的差异效应。dnaE突变的选择方案要求它们能够互补一个温度敏感菌株。然而,对于至少一个突变体来说,互补能力与突变子效应无关。对mutS和dnaE mutS菌株中移码突变和碱基替换突变的突变率进行比较表明,错配修复蛋白对这两种类型的变化反应不同。从染色体和质粒中删除dinB会导致在dnaE mutS双突变背景下,移码突变和碱基替换突变的发生率降低四到五倍。这种降低表明,在这个dnaE突变体中,大多数复制错误是由辅助聚合酶而非复制性聚合酶的作用导致的。从携带野生型dnaE的菌株中删除dinB有可测量的影响,这表明即使在具有正常复制性聚合酶的细胞中,一部分自发突变也是由dinB聚合酶的作用导致的。