National Institute of Biological Sciences, Beijing 102206, China.
J Org Chem. 2013 Feb 1;78(3):800-21. doi: 10.1021/jo3017555. Epub 2012 Sep 20.
The collective total synthesis of Lycopodium alkaloids (+)-fawcettimine (1), (+)-fawcettidine (2), (+)-alopecuridine (4), (-)-lycojapodine A (6), and (-)-8-deoxyserratinine (7) has been accomplished from a common precursor (15) based on a highly concise route inspired by the proposed biosynthesis of the fawcettimine- and serratinine-type alkaloids. An intramolecular C-alkylation enabled efficient installation of the challenging spiro quaternary carbon center and the aza-cyclononane ring. The preparation of the tricyclic skeleton as well as the establishment of the correct relative stereochemistry of the oxa-quaternary center were achieved by hydroxyl-directed SmI(2)-mediated pinacol couplings. An unprecedented tandem transannular N-alkylation and removal of a Boc group was discovered to realize a biosynthesis-inspired process to furnish the desired tetracyclic skeleton. Of particular note is the unique and crucial tautomer locking strategy employed to complete the enantioselective total synthesis of (-)-lycojapodine A (6). The central step in this synthesis is the late-stage hypervalent iodine oxidant (IBX or Dess-Martin periodinane)/TFA-mediated tandem process, which constructed the previously unknown carbinolamine lactone motif and enabled a biomimetic transformation to generate (-)-lycojapodine A (6) in a single operation.
已从基于受拟生源合成启发的高度简洁路线的共同前体(15)完成石松生物碱(+)-法西丁(1)、(+)-法西定碱(2)、(+)-阿罗佩库里丁(4)、(-)-lycojapodine A(6)和(-)-8-去氧血根碱(7)的总集体合成。分子内 C-烷基化能够有效地安装具有挑战性的螺季碳中心和氮杂环壬烷环。通过羟基导向的 SmI2 介导的邻二醇偶联反应制备三环骨架并建立正确的氧代季碳中心的相对立体化学。发现了前所未有的串联反环 N-烷基化和 Boc 基团的去除,以实现受生物合成启发的过程,从而提供所需的四环骨架。值得特别注意的是,用于完成(-)-lycojapodine A(6)对映选择性全合成的独特且关键的互变异构体锁定策略。该合成中的关键步骤是后期高价碘氧化剂(IBX 或 Dess-Martin 过碘烷)/TFA 介导的串联过程,该过程构建了以前未知的碳醇胺内酯基序,并能够进行仿生转化,以单一操作生成(-)-lycojapodine A(6)。