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首页> 外文期刊>Journal of biomolecular screening: The official journal of the Society for Biomolecular Screening >Advantages and Challenges of Phenotypic Screens: The Identification of Two Novel Antifungal Geranylgeranyltransferase I Inhibitors
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Advantages and Challenges of Phenotypic Screens: The Identification of Two Novel Antifungal Geranylgeranyltransferase I Inhibitors

机译:表型筛选的优势和挑战:两种新型抗真菌香叶基香叶基转移酶I抑制剂的鉴定

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摘要

Phenotypic screens are effective starting points to identify compounds with desirable activities. To find novel antifungals, we conducted a phenotypic screen in Saccharomyces cerevisiae and identified two discrete scaffolds with good growth inhibitory characteristics. Lack of broad-spectrum activity against pathogenic fungi called for directed chemical compound optimization requiring knowledge of the molecular target. Chemogenomic profiling identified effects on geranylgeranyltransferase I (GGTase I), an essential enzyme that prenylates proteins involved in cell signaling, such as Cdc42p and Rho1p. Selection of resistant mutants against both compounds confirmed the target hypothesis and enabled mapping of the compound binding site to the substrate binding pocket. Differential resistance-conferring mutations and selective substrate competition demonstrate distinct binding modes for the two chemotypes. Exchange of the S. cerevisiae GGTase I subunits with those of Candida albicans resulted in an absence of growth inhibition for both compounds, thus confirming the identified target as well as the narrow antifungal spectrum of activity. This prenylation pathway is reported to be nonessential in pathogenic species and challenges the therapeutic value of these leads while demonstrating the importance of an integrated target identification platform following a phenotypic screen.
机译:表型筛选是识别具有所需活性的化合物的有效起点。为了找到新的抗真菌药,我们在酿酒酵母中进行了表型筛选,并鉴定了两个具有良好生长抑制特性的离散支架。缺乏针对病原真菌的广谱活性,要求进行定向化合物优化,这需要了解分子靶标。化学基因组分析确定了对香叶基香叶基转移酶I(GGTase I)的作用,该酶是使参与细胞信号传导的蛋白质(如Cdc42p和Rho1p)异戊二烯化的必需酶。针对两种化合物的抗性突变体的选择证实了目标假说,并且能够将化合物结合位点映射至底物结合口袋。赋予差异抗性的突变和选择性底物竞争表现出两种化学型的独特结合模式。酿酒酵母GGTase I亚单位与白色念珠菌的亚单位的交换导致两种化合物都没有生长抑制作用,因此证实了所鉴定的靶标以及窄的抗真菌谱。据报道,这种异戊二烯化途径在致病物种中是非必需的,并挑战了这些先导的治疗价值,同时证明了在表型筛选后整合靶标识别平台的重要性。

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