化学
生物碱
组合化学
鉴定(生物学)
化学合成
立体化学
脚手架
受体
结构-活动关系
分离(微生物学)
药物发现
毒蕈碱乙酰胆碱受体
烯烃纤维
生物化学
反应性(心理学)
阿片受体
作者
Stephan M. Freeman,Eleanor M. Landwehr,Riku Tanaka,Juan J. Rojas,Jake B. Bailey,Milan Gembický,Ryan A. Shenvi
摘要
Abstract Plants in the genus Galbulimima (GB) produce a series of neuroactive alkaloids that have proven impractical to obtain and study by isolation or chemical synthesis. The role of GB extracts in traditional Papuan medicine and ritual suggests that one or more alkaloids reach the brain by ingestion; identification of potent muscarinic and opioid receptor antagonists among the GB alkaloids reinforces this idea. The remaining congeners include CNS depressants, antispasmodics, and an unidentified entheogen, but each scaffold currently requires a unique synthesis route, slowing target identification and optimization. Here, we derive a solution to 11 GB alkaloids across three classes via late-stage functionalization and scaffold remodeling of 12.97 g of GB13, which we synthesize in a single pass─a 1000-fold increase over prior best (12 mg). Exhaustive study of GB alkaloid reactivity navigates complex rearrangements, twisted olefin intermediates, and C–H functionalizations catalyzed by palladium and osmium─ultimately delivering short, efficient routes that now allow functional interrogation.
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