首页> 外文期刊>The Journal of Antimicrobial Chemotherapy >Resistance to itraconazole in Aspergillus nidulans and Aspergillus fumigatus is conferred by extra copies of the A. nidulans P-450 14alpha-demethylase gene, pdmA.
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Resistance to itraconazole in Aspergillus nidulans and Aspergillus fumigatus is conferred by extra copies of the A. nidulans P-450 14alpha-demethylase gene, pdmA.

机译:构巢曲霉P-45014α-脱甲基酶基因pdmA的额外拷贝赋予构巢曲霉和烟曲霉对伊曲康唑的抗性。

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摘要

Triazoles selectively inhibit the cytochrome P-450-dependent C-14 lanosterol alpha-demethylase (P-450 14 alpha DM), a key enzyme in ergosterol biosynthesis in fungi. To investigate mechanisms of triazole resistance in a mould, we used Aspergillus nidulans, a genetically amenable model fungus closely related to more pathogenic members of the genus. We selected for genes that would give resistance to itraconazole following transformation with a high copy genomic library of A. nidulans. In all the resistant colonies that we isolated, resistance was conferred by extra copies of the A. nidulans P-450 14 alpha DM gene, pdmA. We determined that in A. nidulans, extra copies of pdmA increase the MIC for itraconazole 36 times over wild-type controls. Similarly, transformation of an Aspergillus fumigatus strain with pITZR1 resulted in increased resistance to itraconazole. Our results indicate that triazole resistance in clinical isolates of moulds may result from amplification or overexpression of the P-450 14 alpha DM and demonstrate the utility of A. nidulans as a promising model fungus for the analysis of drug resistance and susceptibility in the pathogenic fungus A. fumigatus.
机译:三唑选择性抑制细胞色素P-450依赖性C-14羊毛甾醇α-脱甲基酶(P-450 14 alpha DM),这是真菌中麦角固醇生物合成的关键酶。为了研究模具中对三唑的抗性机制,我们使用了构巢曲霉(Aspergillus nidulans),这是一种遗传上可接受的模型真菌,与该属的更多致病成员密切相关。我们选择了在构巢曲霉高拷贝基因组文库转化后对伊曲康唑具有抗性的基因。在我们分离的所有抗性菌落中,构巢曲霉P-450 14 alpha DM基因pdmA的额外拷贝赋予了抗性。我们确定在构巢曲霉中,额外的pdmA拷贝使伊曲康唑的MIC比野生型对照提高了36倍。同样,用pITZR1转化烟曲霉菌株导致对伊曲康唑的耐药性增加。我们的结果表明,霉菌临床分离株中的三唑耐药性可能是由P-450 14 alpha DM的扩增或过表达引起的,证明了构巢曲霉作为有前景的模型真菌可用于分析病原性真菌的耐药性和敏感性。烟曲霉

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