Mechanisms of azole resistance in petite mutants of Candida glabrata

被引:108
作者
Brun, S
Bergès, T
Poupard, P
Vauzelle-Moreau, C
Renier, G
Chabasse, D
Bouchara, JP
机构
[1] CHU Angers, Lab Parasitol Mycol, UPRES EA 3142, Grp Etud Interact Hote Parasite, F-49033 Angers, France
[2] CHU Angers, Immunol Lab, UPRES EA 3142, Grp Etud Interact Hote Parasite, F-49033 Angers, France
[3] Fac Sci Poitiers, Lab Genet Levure, CNRS, UMR 6161, F-86022 Poitiers, France
[4] Fac Sci, UMR Pathol Vegetale 77, F-49045 Angers, France
关键词
D O I
10.1128/AAC.48.5.1788-1796.2004
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
We previously showed that resistant colonies of Candida glabrata inside the azole inhibition zones had respiratory deficiency due to mutations in mitochondrial DNA. Here, we analyzed the mechanisms of azole resistance in petite mutants of C glabrata obtained by exposure to fluconazole or induced by ethidium bromide. The respiratory deficiency of these mutants was confirmed by oxygraphy and flow cytometric analysis with rhodamine 123, and its mitochondrial origin was demonstrated by transmission electron microscopy and restriction endonuclease analysis of the mitochondrial DNA. Flow cytometry with rhodamine 6G suggested an increased drug efflux in mutant cells, which was further supported by Northern blot analysis of the expression of the C glabrata CDR1 (CgCDR1) and CgCDR2 genes, encoding efflux pumps. Conversely, the expression of CgERG11, which encodes the azole target, was not affected by petite mutations, and no differences were seen in the sequence of this gene between parent isolates and mutants. Moreover, sterol analysis showed similar overall amount of sterols in parent and mutant cells, but quantitative modifications were observed in the mutants, with almost undetectable biosynthesis intermediates. Further analysis performed after separation of free sterols from steryl esters revealed a defect in sterol esterification in mutant cells, with free ergosterol representing 92% of the overall sterol content. Thus, resistance or decreased susceptibility to azoles in petite mutants of C. glabrata is associated with increased expression of CgCDR1 and, to a lesser extent, of CgCDR2. In addition, the marked increase in free ergosterol content would explain their increased susceptibility to polyenes.
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页码:1788 / 1796
页数:9
相关论文
共 46 条
[1]   Positive and negative regulation of a sterol biosynthetic gene (ERG3) in the post-squalene portion of the yeast ergosterol pathway [J].
ArthingtonSkaggs, BA ;
Crowell, DN ;
Yang, H ;
Sturley, SL ;
Bard, M .
FEBS LETTERS, 1996, 392 (02) :161-165
[2]   In-vivo selection of an azole-resistant petite mutant of Candida glabrata [J].
Bouchara, JP ;
Zouhair, R ;
Le Boudouil, S ;
Renier, G ;
Filmon, R ;
Chabasse, D ;
Hallet, JN ;
Defontaine, A .
JOURNAL OF MEDICAL MICROBIOLOGY, 2000, 49 (11) :977-984
[3]   Relationships between respiration and susceptibility to azole antifungals in Candida glabrata [J].
Brun, S ;
Aubry, C ;
Lima, O ;
Filmon, R ;
Bergès, T ;
Chabasse, D ;
Bouchara, JP .
ANTIMICROBIAL AGENTS AND CHEMOTHERAPY, 2003, 47 (03) :847-853
[4]   In-vitro resistance to azoles associated with mitochondrial DNA deficiency in Candida glabrata [J].
Defontaine, A ;
Bouchara, JP ;
Declerk, P ;
Planchenault, C ;
Chabasse, D ;
Hallet, JN .
JOURNAL OF MEDICAL MICROBIOLOGY, 1999, 48 (07) :663-670
[5]   Candida glabrata:: Review of epidemiology, pathogenesis, and clinical disease with comparison to C-albicans [J].
Fidel, PL ;
Vazquez, JA ;
Sobel, JD .
CLINICAL MICROBIOLOGY REVIEWS, 1999, 12 (01) :80-+
[6]  
FOLCH J, 1957, J BIOL CHEM, V226, P497
[7]   DELETION OF THE CANADIDA-GLABRATA ERG3 AND ERG11 GENES - EFFECT ON CELL VIABILITY, CELL-GROWTH, STEROL COMPOSITION, AND ANTIFUNGAL SUSCEPTIBILITY [J].
GEBER, A ;
HITCHCOCK, CA ;
SWARTZ, JE ;
PULLEN, FS ;
MARSDEN, KE ;
KWONCHUNG, KJ ;
BENNETT, JE .
ANTIMICROBIAL AGENTS AND CHEMOTHERAPY, 1995, 39 (12) :2708-2717
[8]   Erythromycin, an inhibitor of mitoribosomal protein biosynthesis, alters the amphotericin B susceptibility of Candida albicans [J].
Geraghty, P ;
Kavanagh, K .
JOURNAL OF PHARMACY AND PHARMACOLOGY, 2003, 55 (02) :179-184
[9]   Disruption of mitochondrial function in Candida albicans leads to reduced cellular ergosterol levels and elevated growth in the presence of amphotericin B [J].
Geraghty, P ;
Kavanagh, K .
ARCHIVES OF MICROBIOLOGY, 2003, 179 (04) :295-300
[10]   FLUCONAZOLE RESISTANCE IN CANDIDA-GLABRATA [J].
HITCHCOCK, CA ;
PYE, GW ;
TROKE, PF ;
JOHNSON, EM ;
WARNOCK, DW .
ANTIMICROBIAL AGENTS AND CHEMOTHERAPY, 1993, 37 (09) :1962-1965