Publication | Open Access
Fluoroquinolone Resistance in Clinical Isolates of <i>Streptococcus pneumoniae</i> : Contributions of Type II Topoisomerase Mutations and Efflux to Levels of Resistance
121
Citations
27
References
2000
Year
We report on amino acid substitutions in the quinolone resistance-determining region of type II topisomerases and the prevalence of reserpine-inhibited efflux for 70 clinical isolates of S. pneumoniae for which the ciprofloxacin MIC is >/=4 microgram/ml and 28 isolates for which the ciprofloxacin MIC is </=2 microgram/ml. The amino acid substitutions in ParC conferring low-level resistance (MICs, 4 to 8 microgram/ml) included Phe, Tyr, and Ala for Ser-79; Asn, Ala, Gly, Tyr, and Val for Asp-83; Asn for Asp-78; and Pro for Ala-115. Isolates with intermediate-level (MICs, 16 to 32 microgram/ml) and high-level (MICs, 64 microgram/ml) resistance harbored substitutions of Phe and Tyr for Ser-79 or Asn and Ala for Asp-83 in ParC and an additional substitution in GyrA which included either Glu-85-Lys (Gly) or Ser-81-Phe (Tyr). Glu-85-Lys was found exclusively in isolates with high-level resistance. Efflux contributed primarily to low-level resistance in isolates with or without an amino acid substitution in ParC. The impact of amino acid substitutions in ParE was minimal, and no substitutions in GyrB were identified.
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1969 | 3.3K | |
1999 | 994 | |
1995 | 978 | |
1998 | 869 | |
1997 | 453 | |
1996 | 436 | |
1999 | 258 | |
1997 | 231 | |
1996 | 229 | |
ParC subunit of DNA topoisomerase IV of Streptococcus pneumoniae is a primary target of fluoroquinolones and cooperates with DNA gyrase A subunit in forming resistance phenotype Rosario Múñoz, Adela G. de la Campa Antimicrobial Agents and Chemotherapy Klebsiella PneumoniaePare SubunitsMolecular BiologyEscherichia ColiS. Pneumoniae | 1996 | 225 |
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