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PMID: 11812126 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

Mistranslation induced by streptomycin provokes a RecABC/RuvABC-dependent mutator phenotype in Escherichia coli cells.

Journal of molecular biology ·Vol. 315 ·No. 4 ·2002-01-25 ·Pages 513-27

Balashov S, Humayun MZ

Abstract

Translational stress-induced mutagenesis (TSM) refers to the mutator phenotype observed in Escherichia coli cells expressing a mutant allele (mutA or mutC) of the glycine tRNA gene glyV (or glyW). Because of an anticodon mutation, expression of the mutA allele results in low levels of Asp-->Gly mistranslation. The mutA phenotype does not require lexA-regulated SOS mutagenesis functions, and appears to be suppressed in cells defective for RecABC-dependent homologous recombination functions. To test the hypothesis that the TSM response is mediated by non-specific mistranslation rather than specific Asp-->Gly misreading, we asked if streptomycin (Str), an aminoglycoside antibiotic known to promote mistranslation, can provoke a mutator phenotype. We report that Str induces a strong mutator phenotype in cells bearing certain alleles of rpsL, the gene encoding S12, an essential component of the ribosomal 30 S subunit. The phenotype is strikingly similar to that observed in mutA cells in its mutational specificity, as well as in its requirement for RecABC-mediated homologous recombination functions. Expression of Str-inducible mutator phenotype correlates with mistranslation efficiency in response to Str. Thus, mistranslation in general is able to induce the TSM response. The Str-inducible mutator phenotype described here defines a new functional class of rpsL alleles, and raises interesting questions on the mechanism of action of Str, and on bacterial response to antibiotic stress.

MeSH Terms
Anti-Bacterial Agents/pharmacology Bacterial Proteins/genetics,metabolism Codon, Nonsense/genetics DNA Helicases DNA-Binding Proteins/metabolism Dose-Response Relationship, Drug Drug Resistance, Bacterial/genetics Endodeoxyribonucleases/metabolism Escherichia coli/drug effects,genetics,metabolism Escherichia coli Proteins/metabolism Exodeoxyribonuclease V Exodeoxyribonucleases/metabolism Gene Expression Regulation, Bacterial/drug effects Gene Frequency Lac Operon/genetics Mutagenesis/drug effects,genetics Phenotype Protein Biosynthesis/drug effects,genetics Protein Synthesis Inhibitors/pharmacology Rec A Recombinases/metabolism Recombination, Genetic/genetics Regulon/genetics Ribosomal Protein S9 SOS Response, Genetics/genetics Sequence Homology, Nucleic Acid Serine Endopeptidases/genetics Streptomycin/pharmacology Suppression, Genetic/genetics
Chemicals
Anti-Bacterial Agents Bacterial Proteins Codon, Nonsense DNA-Binding Proteins Escherichia coli Proteins LexA protein, Bacteria Protein Synthesis Inhibitors Ribosomal Protein S9 RpsI protein, E coli RuvB protein, Bacteria ruvC protein, E coli Rec A Recombinases Endodeoxyribonucleases Exodeoxyribonucleases Exodeoxyribonuclease V Serine Endopeptidases Holliday junction DNA helicase, E coli DNA Helicases Streptomycin
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Balashov Sergey
Department of Microbiology and Molecular Genetics, UMDNJ - New Jersey Medical School, 185 South Orange Avenue, Newark, NJ 07103, USA.
Humayun M Zafri
Article Info
Journal
Journal of molecular biology
Abbr.
J Mol Biol
ISSN
0022-2836
Published
2002-01-25
Pages
513-27
Language
English
Region
England
NLM ID
2985088R
Subset
IM
Grants
NIGMS NIH HHS · GM58253 · United States
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