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Collective synthesis of lycopodium alkaloids and tautomer locking strategy for the total synthesis of (-)-lycojapodine A

机译:(-)-lycojapodine A的总合成的衣原体生物碱的集体合成和互变异构体锁定策略

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摘要

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 SmI2- 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.
机译:石蒜碱生物碱(+)-法西替明(1),(+)-法西替丁(2),(+)-苦参碱(4),(-)-lycojapodine A(6)和(-)-8 -foxyserratinine(7)是由一种常见的前体(15)根据高度精确的路线完成的,该路线受拟定的fawcettimine-和serratinine型生物碱的生物合成启发。分子内C-烷基化可有效安装具有挑战性的螺四价碳中心和氮杂-环壬烷环。三环骨架的制备以及氧杂-季中心的正确相对立体化学的建立是通过羟基定向的SmI2介导的频哪醇偶联实现的。发现了空前的串联跨环N-烷基化和Boc基团的去除,以实现生物合成启发的过程,以提供所需的四环骨架。特别值得注意的是,独特而关键的互变异构体锁定策略可用于完成(-)-糖水芹菜碱A的对映选择性全合成(6)。该合成过程的中心步骤是后期高价碘氧化剂(IBX或Dess-Martin高碘酸)/ TFA介导的串联过程,该过程构建了以前未知的甲醇胺内酯基序,并能够进行仿生转化以生成(-)-lycojapodine A (6)一次操作。

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