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Target Identification and Mechanism of Action of Picolinamide and Benzamide Chemotypes with Antifungal Properties

机译:吡啶胺和苯胺化学型与抗真菌特性的目标鉴定及机制

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Invasive fungal infections are accompanied by high mortality rates that range up to 90%. At present, only three different compound classes are available for use in the clinic, and these often suffer from low bioavailability, toxicity, and drug resistance. These issues emphasize an urgent need for novel antifungal agents. Herein, we report the identification of chemically versatile benzamide and picolinamide scaffolds with antifungal properties. Chemogenomic profiling and biochemical assays with purified protein identified Sec14p, the major phosphatidylinositol/phosphatidylcholine transfer protein inSaccharomyces cerevisiae, as the sole essential target for these compounds. A functional variomics screen identified resistance-conferring residues that localized to the lipid-binding pocket of Sec14p. Determination of the X-ray co-crystal structure of a Sec14p-compound complex confirmed binding in this cavity and rationalized both the resistance-conferring residues and the observed structure-activity relationships. Taken together, these findings open new avenues for rational compound optimization and development of novel antifungal agents.
机译:侵袭性真菌感染伴随着高达90%的死亡率高。目前,只有三种不同的复合类别可用于诊所,这些通常患有低生物利用度,毒性和耐药性。这些问题强调了迫切需要新型抗真菌剂。在此,我们报告了抗真菌性质的化学通用苯甲酰胺和吡啶胺酰胺支架的鉴定。用纯化蛋白质的化学类别分析和生物化学测定确定SEC14P,主要磷脂酰肌醇/磷脂酰胆碱转移蛋白质Insaccaromyces Cerevisiae,作为这些化合物的唯一必需靶标。函数变形筛网鉴定了赋予局部脂质结合袋的抗性赋予抗血液14P的残留物。测定SEC14P-化合物复合物的X射线共晶结构证实了该腔中的结合,并合理化了赋予抵抗力的残基和观察到的结构 - 活性关系。在一起,这些发现开辟了新的复合优化和新型抗真菌剂的开发的新途径。

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