Multiple efflux mechanisms are involved in Candida albicans fluconazole resistance

被引:202
作者
Albertson, GD
Niimi, M
Cannon, RD
Jenkinson, HF
机构
[1] UNIV OTAGO,DEPT ORAL BIOL & ORAL PATHOL,MOL ORAL BIOL LAB,DUNEDIN,NEW ZEALAND
[2] UNIV OTAGO,CTR GENE RES,DUNEDIN,NEW ZEALAND
关键词
D O I
10.1128/AAC.40.12.2835
中图分类号
Q93 [微生物学];
学科分类号
071005 [微生物学]; 100705 [微生物与生化药学];
摘要
Fluconazole-susceptible Candida albicans strains accumulated [H-3]fluconazole at a rate of approximately 2 pmol/min per 10(9) cells. Fluconazole accumulation was not affected by the pretreatment of cells with sodium azide or with 2-deoxyglucose. The rate of fluconazole accumulation became saturated at high fluconazole concentrations and was not affected by the addition of ketoconazole, and there was no fluconazole accumulation in cells incubated at 4 degrees C. A fluconazole-resistant mutant of C. albicans SGY-243 was isolated following growth enrichment in fluconazole-containing medium. Cells of the mutant strain, designated FR2, showed a reduced rate of fluconazole accumulation compared with SGY-243 and were not resistant to other azole antifungal agents. The rates of fluconazole accumulation by C. albicans FR2 and the other azole-resistant strains, B59630, AD, and KB, were increased in the presence of sodium azide, suggesting that fluconazole resistance in these strains may be associated with an energy-dependent drug efflux. Fluconazole-resistant C. albicans strains all contained elevated amounts (2- to 17-fold) of mRNA encoding Cdr1, an ATP-binding cassette-type transporter. In addition, C. albicans FR2 also contained increased amounts of mRNA encoding Ben(r), a major facilitator superfamily transporter. These results suggest that fluconazole enters C. albicans cells by facilitated diffusion and that fluconazole resistance may involve energy-dependent drug efflux associated with increased expression of Ben(r) and/or Cdr1.
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页码:2835 / 2841
页数:7
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