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Mechanisms of resistance to azole antifungal agents in Candida albicans isolates from AIDS patients involve specific multidrug transporters

Antimicrobial Agents and Chemotherapy · 1995 · Vol. 39(11) · pp. 2378–2386
Dominique SanglardKarl KuchlerFrançoise IscherJean‐Luc PaganiMichel MonodJacques Billé

Abstract

Azole antifungal agents, and especially fluconazole, have been used widely to treat oropharyngeal candidiasis in patients with AIDS. An increasing number of cases of clinical resistance against fluconazole, often correlating with in vitro resistance, have been reported. To investigate the mechanisms of resistance toward azole antifungal agents at the molecular level in clinical C. albicans isolates, we focused on resistance mechanisms related to the cellular target of azoles, i.e., cytochrome P450(14DM) (14DM) and those regulating the transport or accumulation of fluconazole. The analysis of sequential isogenic C. albicans isolates with increasing levels of resistance to fluconazole from five AIDS patients showed that overexpression of the gene encoding 14DM either by gene amplification or by gene deregulation was not the major cause of resistance among these clinical isolates. We found, however, that fluconazole-resistant C. albicans isolates failed to accumulate 3H-labelled fluconazole. This phenomenon was reversed in resistant cells by inhibiting the cellular energy supply with azide, suggesting that resistance could be mediated by energy-requiring efflux pumps such as those described as ATP-binding cassette (ABC) multidrug transporters. In fact, some but not all fluconazole-resistant clinical C. albicans isolates exhibited up to a 10-fold relative increase in mRNA levels for a recently cloned ABC transporter gene called CDR1. In an azole-resistant C. albicans isolate not overexpressing CDR1, the gene for another efflux pump named BENr was massively overexpressed. This gene was cloned from C. albicans for conferring benomyl resistance in Saccharomyces cerevisiae. Therefore, at least the overexpression or the deregulation of these two genes potentially mediates resistance to azoles in C. albicans clinical isolates from AIDS patients with oropharyngeal candidiasis. Involvement of ABC transporters in azole resistance was further evidenced with S. cerevisiae mutants lacking specific multidrug transporters which were rendered hypersusceptible to azole derivatives including fluconazole, itraconazole, and ketoconazole.

Pneumocystis jirovecii pneumonia detection and treatmentAntifungal resistance and susceptibilityAntibiotic Resistance in BacteriaFluconazoleAzoleCandida albicansEffluxCorpus albicansMicrobiologyBiologyMultiple drug resistanceATP-binding cassette transporterDrug resistance

MeSH terms

Antifungal AgentsAzolesBase SequenceCandida albicansCandidiasis, OralDNA, FungalDrug Resistance, MicrobialFungal ProteinsGenes, FungalHumansMicrobial Sensitivity TestsMolecular Sequence DataNucleic Acid HybridizationPlasmidsRNA, Fungal

Funding

  • Bundesamt für Gesundheit
Citations
816
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References
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Methods of multilocus enzyme electrophoresis for bacterial population genetics and systematics
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Resistance of Candida species to fluconazole
Antimicrobial Agents and Chemotherapy · 1995 · 881 citations
BIOCHEMISTRY OF MULTIDRUG RESISTANCE MEDIATED BY THE MULTIDRUG TRANSPORTER
Annual Review of Biochemistry · 1993 · 3,504 citations
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