首页> 外文OA文献 >A Gain-of-Function Mutation in the Transcription Factor Upc2p Causes Upregulation of Ergosterol Biosynthesis Genes and Increased Fluconazole Resistance in a Clinical Candida albicans Isolate▿ †
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A Gain-of-Function Mutation in the Transcription Factor Upc2p Causes Upregulation of Ergosterol Biosynthesis Genes and Increased Fluconazole Resistance in a Clinical Candida albicans Isolate▿ †

机译:转录因子Upc2p中的功能增益突变导致临床白色念珠菌分离物中的麦角固醇生物合成基因上调并增加了氟康唑抗性▿†

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摘要

In the pathogenic yeast Candida albicans, the zinc cluster transcription factor Upc2p has been shown to regulate the expression of ERG11 and other genes involved in ergosterol biosynthesis upon exposure to azole antifungals. ERG11 encodes lanosterol demethylase, the target enzyme of this antifungal class. Overexpression of UPC2 reduces azole susceptibility, whereas its disruption results in hypersusceptibility to azoles and reduced accumulation of exogenous sterols. Overexpression of ERG11 leads to the increased production of lanosterol demethylase, which contributes to azole resistance in clinical isolates of C. albicans, but the mechanism for this has yet to be determined. Using genome-wide gene expression profiling, we found UPC2 and other genes involved in ergosterol biosynthesis to be coordinately upregulated with ERG11 in a fluconazole-resistant clinical isolate compared with a matched susceptible isolate from the same patient. Sequence analysis of the UPC2 alleles of these isolates revealed that the resistant isolate contained a single-nucleotide substitution in one UPC2 allele that resulted in a G648D exchange in the encoded protein. Introduction of the mutated allele into a drug-susceptible strain resulted in constitutive upregulation of ERG11 and increased resistance to fluconazole. By comparing the gene expression profiles of the fluconazole-resistant isolate and of strains carrying wild-type and mutated UPC2 alleles, we identified target genes that are controlled by Upc2p. Here we show for the first time that a gain-of-function mutation in UPC2 leads to the increased expression of ERG11 and imparts resistance to fluconazole in clinical isolates of C. albicans.
机译:在致病性酵母白色念珠菌中,锌簇转录因子Upc2p已显示在暴露于唑类抗真菌剂后能调节ERG11和参与麦角固醇生物合成的其他基因的表达。 ERG11编码羊毛甾醇脱甲基酶,该抗真菌类的目标酶。 UPC2的过表达降低了对唑的敏感性,而其破坏则导致对唑的高度敏感性和外源固醇的积累减少。 ERG11的过表达导致羊毛甾醇脱甲基酶的产生增加,这在白色念珠菌的临床分离株中促进了唑的抗性,但其机制尚待确定。使用全基因组基因表达谱分析,我们发现与氟康唑耐药的临床分离株相比,UPC2和其他参与麦角甾醇生物合成的基因与ERG11协同上调,与来自同一患者的匹配易感分离株相比。这些分离株的UPC2等位基因的序列分析表明,抗性分离株在一个UPC2等位基因中包含一个单核苷酸取代,导致编码蛋白发生G648D交换。将突变的等位基因引入药物敏感菌株后,导致ERG11的组成型上调并增加了对氟康唑的耐药性。通过比较耐氟康唑的菌株和携带野生型和突变的UPC2等位基因的菌株的基因表达谱,我们鉴定了受Upc2p控制的靶基因。在这里,我们首次显示UPC2中的功能获得突变导致ERG11表达增加,并在白色念珠菌的临床分离株中赋予了对氟康唑的抗性。

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