Sasaki Mayumi, Kurusu Yasurou
Laboratory of Molecular Microbiology, College of Agriculture, Ibaraki University, Ami 3-21-1, Inashiki, Ibaraki 300-0393, Japan.
FEMS Microbiol Lett. 2004 May 1;234(1):37-42. doi: 10.1016/j.femsle.2004.03.004.
In the current studies, we investigated base substitutions in the Bacillus subtilis mutT, mutM, and mutY DNA error-prevention system. In the wild type strain, spontaneous mutations were mainly transitions, either G:C --> A:T or A:T --> G:C. Although both transitions and transversions were observed in mutY and mutM mutants, mutM/mutY double mutants contain strictly G:C --> T:A transversions. In the mutT strain, A:T --> C:G transversion was not observed, and over-expression of the B. subtilis mutT gene had no effect on the mutation rate in the Escherichia coli mutT strain. Using 8-oxo-dGTP-induced mutagenesis, transitions especially A:T --> G:C were predominant in the wild type and mutY strains. In contrary, transversion was high on mutY and double mutant (mutM mutY). Finally, the opuBC and yitG genes were identified from the B. subtilis chromosome as mutator genes that prevented the transition base substitutions.
在当前的研究中,我们研究了枯草芽孢杆菌mutT、mutM和mutY DNA错配预防系统中的碱基替换情况。在野生型菌株中,自发突变主要是转换,即G:C→A:T或A:T→G:C。虽然在mutY和mutM突变体中观察到了转换和颠换,但mutM/mutY双突变体只含有严格的G:C→T:A颠换。在mutT菌株中,未观察到A:T→C:G颠换,并且枯草芽孢杆菌mutT基因的过表达对大肠杆菌mutT菌株的突变率没有影响。使用8-氧代-dGTP诱导诱变时,转换尤其是A:T→G:C在野生型和mutY菌株中占主导。相反,在mutY和双突变体(mutM mutY)中颠换率很高。最后,从枯草芽孢杆菌染色体中鉴定出opuBC和yitG基因作为防止转换碱基替换的诱变基因。