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Diversity, Epidemiology, and Genetics of Class D β-Lactamases

Antimicrobial Agents and Chemotherapy · 2009 · Vol. 54(1) · pp. 24–38
Laurent PoirelThierry NaasPatrice Nordmann

Abstract

Class D beta-lactamase-mediated resistance to beta-lactams has been increasingly reported during the last decade. Those enzymes also known as oxacillinases or OXAs are widely distributed among Gram negatives. Genes encoding class D beta-lactamases are known to be intrinsic in many Gram-negative rods, including Acinetobacter baumannii and Pseudomonas aeruginosa, but play a minor role in natural resistance phenotypes. The OXAs (ca. 150 variants reported so far) are characterized by an important genetic diversity and a great heterogeneity in terms of beta-lactam hydrolysis spectrum. The acquired OXAs possess either a narrow spectrum or an expanded spectrum of hydrolysis, including carbapenems in several instances. Acquired class D beta-lactamase genes are mostly associated to class 1 integron or to insertion sequences.

Antibiotic Resistance in BacteriaInfections and bacterial resistanceAntibiotics Pharmacokinetics and EfficacyIntegronAcinetobacter baumanniiGeneticsBiologyPseudomonas aeruginosaGenePlasmidMicrobiologyBeta-lactamaseAcinetobacter

MeSH terms

Amino Acid SequenceAnimalsBacteriaBacterial Infectionsbeta-LactamasesHumansMolecular Sequence DataMolecular EpidemiologyDrug Resistance, Bacterial
Citations
606
FWCI
14.07
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175
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Diversity, Epidemiology, and Genetics of Class D β-Lactamases · Scinovex