Dominant negative mutator mutations in the mutS gene of Escherichia coli
Open Access
- 1 September 1994
- journal article
- research article
- Published by American Society for Microbiology in Journal of Bacteriology
- Vol. 176 (17) , 5393-5400
- https://doi.org/10.1128/jb.176.17.5393-5400.1994
Abstract
The MutS protein of Escherichia coli is part of the dam-directed MutHLS mismatch repair pathway which rectifies replication errors and which prevents recombination between related sequences. In order to more fully understand the role of MutS in these processes, dominant negative mutS mutations on a multicopy plasmid were isolated by screening transformed wild-type cells for a mutator phenotype, using a Lac+ papillation assay. Thirty-eight hydroxylamine- and 22 N-methyl-N'-nitro-N-nitrosoguanidine-induced dominant mutations were isolated. Nine of these mutations altered the P-loop motif of the ATP-binding site, resulting in four amino acid substitutions. With one exception, the remaining sequenced mutations all caused substitution of amino acids conserved during evolution. The dominant mutations in the P-loop consensus caused severely reduced repair of heteroduplex DNA in vivo in a mutS mutant host strain. In a wild-type strain, the level of repair was decreased by the dominant mutations to between 12 to 90% of the control value, which is consistent with interference of wild-type MutS function by the mutant proteins. Increasing the wild-type mutS gene dosage resulted in a reversal of the mutator phenotype in about 60% of the mutant strains, indicating that the mutant and wild-type proteins compete. In addition, 20 mutant isolates showed phenotypic reversal by increasing the gene copies of either mutL or mutH. There was a direct correlation between the levels of recombination and mutagenesis in the mutant strains, suggesting that these phenotypes are due to the same function of MutS.Keywords
This publication has 33 references indexed in Scilit:
- Mutations of a mutS homolog in hereditary nonpolyposis colorectal cancerPublished by Elsevier ,1993
- The human mutator gene homolog MSH2 and its association with hereditary nonpolyposis colon cancerCell, 1993
- MECHANISMS AND BIOLOGICAL EFFECTS OF MISMATCH REPAIRAnnual Review of Genetics, 1991
- The barrier to recombination between Escherichia coli and Salmonella typhimurium is disrupted in mismatch-repair mutantsNature, 1989
- A simple and rapid method to obtain substitution mutations in Escherichia coli: isolation of a dam deletion/insertion mutationGene, 1988
- Mismatch correction at O6-methylguanine residues in E. coli DNANature, 1982
- Mutator mutations in Escherichia coli induced by the insertionof phage Mu and the transposable resistance elements Tn5 and Tn10Mutation Research - Fundamental and Molecular Mechanisms of Mutagenesis, 1982
- Bromouracil mutagenesis and mismatch repair in mutator strains of Escherichia coliMutation Research - Fundamental and Molecular Mechanisms of Mutagenesis, 1978
- Pleiotropic effects of a DNA adenine methylation mutation (dam-3) in Escherichia coli K12Mutation Research - Fundamental and Molecular Mechanisms of Mutagenesis, 1975
- Marker-specific effects in genetic recombinationJournal of Molecular Biology, 1970