Antimicrobial Agents and Chemotherapy · 2001 · 14 citations · 7 references
Unique MutationsStaphylococcus AureusMolecular BiologyAntimicrobial ChemotherapyPge 9262932Antibiotic ResistanceBacterial PathogensDrug ResistanceMedical MicrobiologyInfection ControlAntimicrobial ResistanceHealth SciencesClinical MicrobiologyAntimicrobial Resistance GeneVitro DevelopmentAntimicrobial SusceptibilityAntibioticsNonfluorinated QuinolonesMicrobiologyMedicine
The in vitro development of resistance to the new nonfluorinated quinolones (NFQs; PGE 9262932, PGE 4175997, and PGE 9509924) was investigated in Staphylococcus aureus. At concentrations two times the MIC, step 1 mutants were isolated more frequently with ciprofloxacin and trovafloxacin (9.1 x 10(-8) and 5.7 x 10(-9), respectively) than with the NFQs, gatifloxacin, or clinafloxacin (<5.7 x 10(-10)). Step 2 and step 3 mutants were selected via exposure of a step 1 mutant (selected with trovafloxacin) to four times the MICs of trovafloxacin and PGE 9262932. The step 1 mutant contained the known Ser80-Phe mutation in GrlA, and the step 2 and step 3 mutants contained the known Ser80-Phe and Ser84-Leu mutations in GrlA and GyrA, respectively. Compared to ciprofloxacin, the NFQs were 8-fold more potent against the parent and 16- to 128-fold more potent against the step 3 mutants. Mutants with high-level NFQ resistance (MIC, 32 microg/ml) were isolated by the spiral plater-based serial passage technique. DNA sequence analysis of three such mutants revealed the following mutations: (i) Ser84-Leu in GyrA and Glu84-Lys and His103-Tyr in GrlA; (ii) Ser-84Leu in GyrA, Ser52-Arg in GrlA, and Glu472-Val in GrlB; and (iii) Ser84-Leu in GyrA, Glu477-Val in GyrB, and Glu84-Lys and His103-Tyr in GrlA. Addition of the efflux pump inhibitor reserpine (10 microg/ml) resulted in 4- to 16-fold increases in the potencies of the NFQs against these mutants, whereas it resulted in 2-fold increases in the potencies of the NFQs against the parent.
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New topoisomerase essential for chromosome segregation in E. coli
Junichi Kato, Yukinobu Nishimura, Ryu Imamura et al. · Cell · 1990 · 561 citations
New Topoisomerase Essential, Chromatin, Molecular Biology +4