化学
化学选择性
立体专一性
三环
立体化学
环加成
组合化学
基质(水族馆)
烷基
芳基
苯氮卓类
有机化学
催化作用
海洋学
地质学
作者
Zhen Guo,Ruiyang Bao,Yuanhe Li,Yun‐Shan Li,Jingyang Zhang,Yefeng Tang
标识
DOI:10.1002/anie.202102614
摘要
Abstract The collective synthesis of skeletally diverse Stemona alkaloids featuring tailored dyotropic rearrangements of β‐lactones as key elements is described. Specifically, three typical 5/7/5 tricyclic skeletons associated with stemoamide, tuberostemospiroline and parvistemonine were first accessed through chemoselective dyotropic rearrangements of β‐lactones involving alkyl, hydrogen, and aryl migration, respectively. By the rational manipulation of substrate structures and reaction conditions, these dyotropic rearrangements proceeded with excellent efficiency, good chemoselectivity and high stereospecificity. Furthermore, several polycyclic Stemona alkaloids, including saxorumamide, isosaxorumamide, stemonine and bisdehydroneostemoninine, were obtained from the aforementioned tricyclic skeletons through late‐stage derivatizations. A novel visible‐light photoredox‐catalyzed formal [3+2] cycloaddition was also developed, which offers a valuable tool for accessing oxaspirobutenolide and related scaffolds.
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