Antimicrobial Agents and Chemotherapy · 2011 · 165 citations · 33 references
Microbial PathogensEnterococcus Faecium Ucn71BacteriologyEnterococcus FaeciumAntibiotic ResistanceBacterial PathogensDrug ResistanceDegenerate PrimersFood MicrobiologyInfection ControlAntimicrobial ResistanceAerobic CulturingHealth SciencesVirulence FactorResistance OperonMolecular MicrobiologyBacterial ResistanceClinical MicrobiologyBiomolecular EngineeringAntimicrobial Resistance GeneAntimicrobial SusceptibilityAntibioticsMicrobiologyMedicineMicrobial Genetics
Enterococcus faecium UCN71, isolated from a blood culture, was resistant to low levels of vancomycin (MIC, 16 μg/ml) but susceptible to teicoplanin (MIC, 0.5 μg/ml). No amplification was observed with primers specific for the previously described glycopeptide resistance ligase genes, but a PCR product corresponding to a gene called vanN was obtained using degenerate primers and was sequenced. The deduced VanN protein was related (65% identity) to the d-alanine:d-serine VanL ligase. The organization of the vanN gene cluster, determined using degenerate primers and by thermal asymmetric interlaced (TAIL)-PCR, was similar to that of the vanC operons. A single promoter upstream from the resistance operon was identified by rapid amplification of cDNA ends (RACE)-PCR. The presence of peptidoglycan precursors ending in d-serine and d,d-peptidase activities in the absence of vancomycin indicated constitutive expression of the resistance operon. VanN-type resistance was transferable by conjugation to E. faecium. This is the first report of transferable d-Ala-d-Ser-type resistance in E. faecium.
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MEGA4: Molecular Evolutionary Genetics Analysis (MEGA) Software Version 4.0
Koichiro Tamura, Joel T. Dudley, M Nei et al. · Molecular Biology and Evolution · 2007 · 28.8K citations · Full text