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杀菌剂氟啶酮可拮抗人类真菌病原体白念珠菌中的氟康唑活性。

The fungicide fludioxonil antagonizes fluconazole activity in the human fungal pathogen Candida albicans.

机构信息

Biological Systems Analysis, Helmholtz Centre for Infection Research, Braunschweig, Germany.

出版信息

J Med Microbiol. 2012 Dec;61(Pt 12):1696-1703. doi: 10.1099/jmm.0.050963-0. Epub 2012 Aug 23.

DOI:10.1099/jmm.0.050963-0
PMID:22918865
Abstract

The fungicide fludioxonil is widely used in agriculture. Residua of this fungicide are occasionally detected in fruits and can therefore be ingested by humans. The human fungal pathogen Candida albicans expresses the target of fludioxonil, Nik1p, a type III histidine kinase involved in stress response. Inhibition of yeast and hyphae growth was hardly observable after treatment of C. albicans SC5314 with fludioxonil. As a side effect, however, we observed a concentration-dependent induction of the expression of the genes CDR1 and CDR2, encoding ATP-binding cassette (ABC) transporters. This was independent of the presence of the target of fludioxonil as induction was also observed in a Δnik1 deletion mutant. Deletion of the CDR1 gene aggravated the inhibition of germ tube formation by fludioxonil, indicating that, in the wild-type, the fungicide was discharged from the cell by Cdr1p. Cdr1p is also known as a resistance factor of C. albicans against the commonly used antimycotic fluconazole. Thus, the effect of concurrent exposure to fludioxonil and known cargoes of ABC transporters on their extrusion and the growth of C. albicans was examined. Pre-incubation with fludioxonil decreased the export rate of rhodamine 6G. The resistance to fluconazole was increased by fludioxonil, independently of Nik1p. Therefore, exposure of C. albicans to fludioxonil may lead to increased resistance to fluconazole treatment.

摘要

杀菌剂氟啶酮在农业中被广泛使用。这种杀菌剂的残留偶尔会在水果中被检测到,因此可能被人类摄入。人类真菌病原体白色念珠菌表达氟啶酮的靶标 Nik1p,这是一种参与应激反应的 III 型组氨酸激酶。在用氟啶酮处理白色念珠菌 SC5314 后,几乎观察不到酵母和菌丝生长的抑制。然而,作为一种副作用,我们观察到基因 CDR1 和 CDR2 的表达被浓度依赖性诱导,这两个基因编码 ATP 结合盒(ABC)转运蛋白。这与氟啶酮的靶标无关,因为在Δnik1 缺失突变体中也观察到了诱导。CDR1 基因的缺失加剧了氟啶酮对芽管形成的抑制,表明在野生型中,细胞通过 Cdr1p 排出了杀菌剂。Cdr1p 也是白色念珠菌对常用抗真菌药物氟康唑的耐药因子。因此,研究了同时暴露于氟啶酮和 ABC 转运蛋白已知货物对其外排和白色念珠菌生长的影响。氟啶酮预孵育降低了罗丹明 6G 的外排率。氟康唑的耐药性被氟啶酮独立地增加了,与 Nik1p 无关。因此,白色念珠菌暴露于氟啶酮可能导致对氟康唑治疗的耐药性增加。

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