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Genome-Wide Expression Patterns in Saccharomyces cerevisiae: Comparison of Drug Treatments and Genetic Alterations Affecting Biosynthesis of Ergosterol

机译:酿酒酵母中的全基因组表达模式:药物处理和影响麦角固醇生物合成的遗传改变的比较

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摘要

Enzymes in the ergosterol-biosynthetic pathway are the targets of a number of antifungal agents including azoles, allylamines, and morpholines. In order to understand the response of Saccharomyces cerevisiae to perturbations in the ergosterol pathway, genome-wide transcript profiles following exposure to a number of antifungal agents targeting ergosterol biosynthesis (clotrimazole, fluconazole, itraconazole, ketoconazole, voriconazole, terbinafine, and amorolfine) were obtained. These profiles were compared to the transcript profiles of strains containing deletions of one of the late-stage ergosterol genes: ERG2, ERG5, or ERG6. A total of 234 genes were identified as responsive, including the majority of genes from the ergosterol pathway. Expression of several responsive genes, including ERG25, YER067W, and YNL300W, was also monitored by PCR over time following exposure to ketoconazole. The kinetics of transcriptional response support the conditions selected for the microarray experiment. In addition to ergosterol-biosynthetic genes, 36 mitochondrial genes and a number of other genes with roles related to ergosterol function were responsive, as were a number of genes responsive to oxidative stress. Transcriptional changes related to heme biosynthesis were observed in cells treated with chemical agents, suggesting an additional effect of exposure to these compounds. The expression profile in response to a novel imidazole, PNU-144248E, was also determined. The concordance of responsive genes suggests that this compound has the same mode of action as other azoles. Thus, genome-wide transcript profiles can be used to predict the mode of action of a chemical agent as well as to characterize expression changes in response to perturbation of a metabolic pathway.
机译:麦角固醇生物合成途径中的酶是许多抗真菌剂的目标,包括唑,烯丙胺和吗啉。为了了解酿酒酵母对麦角固醇途径中的扰动的响应,在暴露于许多靶向麦角固醇生物合成的抗真菌剂(克霉唑,氟康唑,伊曲康唑,酮康唑,伏立康唑,特比萘芬和阿莫洛尔)后,获得了全基因组转录物谱。将这些图谱与含有后期麦角固醇基因之一:ERG2,ERG5或ERG6缺失的菌株的转录本图谱进行比较。总共234个基因被鉴定为具有响应性,包括来自麦角固醇途径的大多数基因。暴露于酮康唑后,还可以通过PCR监测几种反应性基因的表达,包括ERG25,YER067W和YNL300W。转录反应的动力学支持为微阵列实验选择的条件。除麦角固醇生物合成基因外,还有36个线粒体基因和许多其他与麦角固醇功能相关的基因也具有响应性,许多基因对氧化应激也具有响应性。在用化学试剂处理过的细胞中观察到了与血红素生物合成相关的转录变化,表明暴露于这些化合物的其他作用。还确定了响应新型咪唑PNU-144248E的表达谱。反应性基因的一致性表明该化合物具有与其他唑类相同的作用方式。因此,全基因组转录本概况可用于预测化学试剂的作用方式,以及表征响应代谢途径扰动的表达变化。

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