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Total syntheses of (+)-alopecuridine, (+)-sieboldine A, and (-)-lycojapodine A

机译:(+)-Alopecuridine,(+)-sieboldine A和(-)-lycojapodine A的总合成

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摘要

(+)-Alopecuridine, (+)-sieboldine A, and (-)-lycojapodine A, three structurally unique and related lycopodium alkaloids, have been synthesized in enantiomeric forms through an efficient strategy. The main synthetic approach for (+)-alopecuridine features a semipinacol rearrangement of hydroxyl epoxide to construct the spiro 6,9-azacarbocycles with an all-carbon quaternary center and a late-stage SmI _2-mediated intramolecular coupling to form the 5-membered ring. Subsequently, the biomimetic synthesis of (+)-sieboldine A and (-)-lycojapodine A was accomplished successfully through two different bioinspired oxidations after a wide search for the oxidation methods. As a result, (+)-sieboldine A was derived from (+)-alopecuridine through an N-oxidationitrone formation process and (-)-lycojapodine A through an interesting cyclic hemiketal formation/oxidative diol cleavage pathway. These results confirmed the biogenetic relationship among the three alkaloids.
机译:(+)-Alopecuridine,(+)-sieboldine A和(-)-lycojapodine A是通过有效策略以对映体形式合成的三种结构独特且相关的lycopodium生物碱。 (+)-alopecuridine的主要合成方法的特点是羟基的半频哪醇重排以构建具有全碳四元中心和后期SmI _2介导的分子内偶联以形成5元成员的螺6,9-氮杂碳环化合物环。随后,在广泛寻找氧化方法之后,通过两种不同的生物启发式氧化成功完成了(+)-西伯来定A和(-)-lycojapodine A的仿生合成。结果,(+)-西伯来定A通过N-氧化/硝化反应形成过程衍生自(+)-邻苯二甲idine啶,并且通过有趣的环状半缩酮形成/氧化二醇裂解途径衍生自(-)-二十二碳五烯嘌呤A。这些结果证实了三种生物碱之间的生物遗传关系。

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