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Oxazolidinone resistance mutations in 23S rRNA of Escherichia coli reveal the central region of domain V as the primary site of drug action.
- Source :
-
Journal of bacteriology [J Bacteriol] 2000 Oct; Vol. 182 (19), pp. 5325-31. - Publication Year :
- 2000
-
Abstract
- Oxazolidinone antibiotics inhibit bacterial protein synthesis by interacting with the large ribosomal subunit. The structure and exact location of the oxazolidinone binding site remain obscure, as does the manner in which these drugs inhibit translation. To investigate the drug-ribosome interaction, we selected Escherichia coli oxazolidinone-resistant mutants, which contained a randomly mutagenized plasmid-borne rRNA operon. The same mutation, G2032 to A, was identified in the 23S rRNA genes of several independent resistant isolates. Engineering of this mutation by site-directed mutagenesis in the wild-type rRNA operon produced an oxazolidinone resistance phenotype, establishing that the G2032A substitution was the determinant of resistance. Engineered U and C substitutions at G2032, as well as a G2447-to-U mutation, also conferred resistance to oxazolidinone. All the characterized resistance mutations were clustered in the vicinity of the central loop of domain V of 23S rRNA, suggesting that this rRNA region plays a major role in the interaction of the drug with the ribosome. Although the central loop of domain V is an essential integral component of the ribosomal peptidyl transferase, oxazolidinones do not inhibit peptide bond formation, and thus these drugs presumably interfere with another activity associated with the peptidyl transferase center.
- Subjects :
- Acetamides chemistry
Acetamides metabolism
Amino Acid Substitution
Anti-Bacterial Agents chemistry
Anti-Bacterial Agents metabolism
Base Sequence
Binding Sites
Catalysis
Catalytic Domain
Drug Resistance, Microbial
Escherichia coli drug effects
Escherichia coli isolation & purification
Genes, Bacterial
Genetic Engineering
Linezolid
Molecular Sequence Data
Molecular Structure
Mutagenesis
Nucleic Acid Conformation
Oxazolidinones chemistry
Oxazolidinones metabolism
Peptidyl Transferases metabolism
RNA, Bacterial chemistry
RNA, Ribosomal, 23S chemistry
Ribosomes
Acetamides pharmacology
Anti-Bacterial Agents pharmacology
Escherichia coli genetics
Oxazolidinones pharmacology
RNA, Bacterial genetics
RNA, Ribosomal, 23S genetics
Subjects
Details
- Language :
- English
- ISSN :
- 0021-9193
- Volume :
- 182
- Issue :
- 19
- Database :
- MEDLINE
- Journal :
- Journal of bacteriology
- Publication Type :
- Academic Journal
- Accession number :
- 10986233
- Full Text :
- https://doi.org/10.1128/JB.182.19.5325-5331.2000