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Profiling of the effects of antifungal agents on yeast cells based on morphometric analysis

机译:基于形态计量学分析抗真菌剂对酵母细胞的作用

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The incidence of fungal infection and evolution of multidrug resistance have increased the need for new antifungal agents. To gain further insight into the development of antifungal drugs, the phenotypic profiles of currently available antifungal agents of three classes-ergosterol, cell wall and nucleic acid biosynthesis inhibitors-were investigated using yeast morphology as a chemogenomic signature. The comparison of drug-induced morphological changes with the deletion of 4718 non-essential genes not only confirmed the mode of action of the drugs but also revealed an unexpected connection among ergosterol, vacuolar proton-transporting V-type ATPase and cell-wall-targeting drugs. To improve, simplify and accelerate drug development, we developed a systematic classifier that sorts a newly discovered compound into a class with a similar mode of action without any mutant information. Using well-characterized agents as target unknown compounds, this method successfully categorized these compounds into their respective classes. Based on our data, we suggest that morphological profiling can be used to develop novel antifungal drugs.
机译:真菌感染的发生和多药耐药性的发展增加了对新型抗真菌剂的需求。为了进一步了解抗真菌药物的开发,使用酵母形态学作为化学基因组学标志研究了三类麦角固醇,细胞壁和核酸生物合成抑制剂的当前可用抗真菌剂的表型概况。比较药物诱导的形态变化和删除4718个非必需基因,不仅证实了药物的作用方式,而且还揭示了麦角固醇,液泡质子运输的V型ATPase和细胞壁靶向之间的意外连接毒品。为了改善,简化和加速药物开发,我们开发了系统的分类器,可以将新发现的化合物分类为具有相似作用方式且没有任何突变信息的类。使用特征明确的药物作为目标未知化合物,该方法成功地将这些化合物归为各自的类别。根据我们的数据,我们建议形态学分析可用于开发新型抗真菌药物。

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