抗真菌
化学
组合化学
脚手架
噻唑
药物发现
铅化合物
抗真菌药
EC50型
生物化学
代谢组学
生物活性
表型筛选
小分子
天然产物
三唑
酰胺
杀菌剂
结构-活动关系
药品
立体化学
环肽
分子模型
对接(动物)
计算生物学
生物
氨基酸
体外
分子
作者
Wenlong Kong,Pengzhi Sun,Xian Ming,F. L. Zhang,Shiqi Fu,Yongli Qiao,Shengkun Li
标识
DOI:10.1021/acs.jafc.6c01337
摘要
Simplification of the complex macrolide UK-2A delivers florylpicoxamid, while optimization of its synthetically challenging pyridinyl acid remained underdeveloped. Scaffold hopping with 14 structurally distinctive heterocyclic acids in the molecular evolution of florylpicoxamid led to thiazole amide as a novel antifungal chemotype. The concomitant antifungal optimization achieved a structurally unique candidate, LEX-K02 (9al, EC50 = 0.140 μM), exhibiting 49-fold higher activity against Gaeumannomyces graminis than florylpicoxamid (EC50 = 7.06 μM). It was demonstrated to possess a unique mechanism in view of both antifungal phenotypes and molecular docking simulation. This antifungal candidate can disrupt the cell membrane. Transcriptomics and metabolomics analysis suggested that compound LEX-K02 may affect the synthesis of N-glycans by targeting the map00510 pathway, and is safe for wheat. Pyridinyl acid optimization of UK-2A-related molecules was validated as a viable fungicide discovery strategy.
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