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Intrinsic and selected resistance to antibiotics binding the ribosome: analyses of Brucella 23S rrn, L4, L22, EF-Tu1, EF-Tu2, efflux and phylogenetic implications.
- Source :
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BMC microbiology [BMC Microbiol] 2006 Oct 02; Vol. 6, pp. 84. Date of Electronic Publication: 2006 Oct 02. - Publication Year :
- 2006
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Abstract
- Background: Brucella spp. are highly similar, having identical 16S RNA. However, they have important phenotypic differences such as differential susceptibility to antibiotics binding the ribosome. Neither the differential susceptibility nor its basis has been rigorously studied. Differences found among other conserved ribosomal loci could further define the relationships among the classical Brucella spp.<br />Results: Minimum inhibitory concentration (MIC) values of Brucella reference strains and three marine isolates to antibiotics binding the ribosome ranged from 0.032 to >256 microg/ml for the macrolides erythromycin, clarithromycin, and azithromycin and 2 to >256 microg/ml for the lincosamide, clindamycin. Though sequence polymorphisms were identified among ribosome associated loci 23S rrn, rplV, tuf-1 and tuf-2 but not rplD, they did not correlate with antibiotic resistance phenotypes. When spontaneous erythromycin resistant (eryR) mutants were examined, mutation of the peptidyl transferase center (A2058G Ec) correlated with increased resistance to both erythromycin and clindamycin. Brucella efflux was examined as an alternative antibiotic resistance mechanism by use of the inhibitor L-phenylalanine-L-arginine beta-naphthylamide (PAbetaN). Erythromycin MIC values of reference and all eryR strains, except the B. suis eryR mutants, were lowered variably by PAbetaN. A phylogenetic tree based on concatenated ribosomal associated loci supported separate evolutionary paths for B. abortus, B. melitensis, and B. suis/B. canis, clustering marine Brucella and B. neotomae with B. melitensis. Though Brucella ovis was clustered with B. abortus, the bootstrap value was low.<br />Conclusion: Polymorphisms among ribosomal loci from the reference Brucella do not correlate with their highly differential susceptibility to erythromycin. Efflux plays an important role in Brucella sensitivity to erythromycin. Polymorphisms identified among ribosome associated loci construct a robust phylogenetic tree supporting classical Brucella spp. designations.
- Subjects :
- Anti-Bacterial Agents metabolism
Azithromycin metabolism
Azithromycin pharmacology
Binding, Competitive
Brucella classification
Clarithromycin metabolism
Clarithromycin pharmacology
DNA, Bacterial chemistry
DNA, Bacterial genetics
Drug Resistance, Bacterial genetics
Drug Resistance, Multiple, Bacterial genetics
Erythromycin metabolism
Erythromycin pharmacology
Microbial Sensitivity Tests methods
Molecular Sequence Data
Peptide Elongation Factor Tu genetics
Phylogeny
Polymorphism, Genetic genetics
Protein Isoforms genetics
RNA, Ribosomal, 23S genetics
Ribosomal Proteins genetics
Ribosomes genetics
Sequence Analysis, DNA
Anti-Bacterial Agents pharmacology
Brucella drug effects
Brucella genetics
Ribosomes metabolism
Subjects
Details
- Language :
- English
- ISSN :
- 1471-2180
- Volume :
- 6
- Database :
- MEDLINE
- Journal :
- BMC microbiology
- Publication Type :
- Academic Journal
- Accession number :
- 17014718
- Full Text :
- https://doi.org/10.1186/1471-2180-6-84