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Mechanism of Quinolone Action and Resistance

Biochemistry · 2014 · Vol. 53(10) · pp. 1565–1574

Abstract

Quinolones are one of the most commonly prescribed classes of antibacterials in the world and are used to treat a variety of bacterial infections in humans. Because of the wide use (and overuse) of these drugs, the number of quinolone-resistant bacterial strains has been growing steadily since the 1990s. As is the case with other antibacterial agents, the rise in quinolone resistance threatens the clinical utility of this important drug class. Quinolones act by converting their targets, gyrase and topoisomerase IV, into toxic enzymes that fragment the bacterial chromosome. This review describes the development of the quinolones as antibacterials, the structure and function of gyrase and topoisomerase IV, and the mechanistic basis for quinolone action against their enzyme targets. It will then discuss the following three mechanisms that decrease the sensitivity of bacterial cells to quinolones. Target-mediated resistance is the most common and clinically significant form of resistance. It is caused by specific mutations in gyrase and topoisomerase IV that weaken interactions between quinolones and these enzymes. Plasmid-mediated resistance results from extrachromosomal elements that encode proteins that disrupt quinolone-enzyme interactions, alter drug metabolism, or increase quinolone efflux. Chromosome-mediated resistance results from the underexpression of porins or the overexpression of cellular efflux pumps, both of which decrease cellular concentrations of quinolones. Finally, this review will discuss recent advancements in our understanding of how quinolones interact with gyrase and topoisomerase IV and how mutations in these enzymes cause resistance. These last findings suggest approaches to designing new drugs that display improved activity against resistant strains.

Cancer therapeutics and mechanismsAntibiotics Pharmacokinetics and EfficacyBioactive Compounds and Antitumor AgentsMechanism (biology)Mechanism of actionQuinoloneChemistryResistance (ecology)Action (physics)MicrobiologyAntibioticsBiologyBiochemistry

MeSH terms

AnimalsAnti-Bacterial AgentsBacteriaBacterial InfectionsBacterial ProteinsHumansQuinolonesDrug Resistance, Bacterial

Funding

  • National Institutes of Health
Citations
1,220
FWCI
25.62
field-weighted impact
References
94
Percentile
100%
vs. same field & year
Citations per year
References
Emerging Mechanisms of Fluoroquinolone Resistance
Emerging infectious diseases · 2001 · 602 citations
DNA Topoisomerases: Structure, Function, and Mechanism
Annual Review of Biochemistry · 2001 · 2,695 citations
The quinolones: decades of development and use
Journal of Antimicrobial Chemotherapy · 2003 · 526 citations
The worldwide emergence of plasmid-mediated quinolone resistance
The Lancet Infectious Diseases · 2006 · 964 citations
1,8-Naphthyridine Derivatives. A New Class of Chemotherapeutic Agents
Journal of Medicinal Chemistry · 1962 · 750 citations
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