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四环吡啶鎓生物碱 epi-十四氢卤代环丙胺 B 的全合成。

Total Synthesis of the Tetracyclic Pyridinium Alkaloid epi-Tetradehydrohalicyclamine B.

机构信息

Max-Planck-Institut für Kohlenforschung, 45470, Mülheim/Ruhr, Germany.

出版信息

Angew Chem Int Ed Engl. 2022 Oct 10;61(41):e202209651. doi: 10.1002/anie.202209651. Epub 2022 Sep 2.

Abstract

The first total synthesis of a tetracyclic marine pyridinium alkaloid hinged on recent advances in chemoselectivity management: While many classical methods failed to afford the perceptively simple pyridine-containing core of the target, nickel/iridium photoredox dual catalysis allowed the critical C-C bond to be formed in good yield. Likewise, ring closing alkyne metathesis (RCAM) worked well in the presence of the unhindered pyridine despite the innately Lewis acidic Mo(+6) center of the alkylidyne catalyst. Finally, an iridium catalyzed hydrosilylation was uniquely effective in reducing a tertiary amide without compromising an adjacent pyridine and the lateral double bonds; this transformation is largely without precedent. The second strained macrocycle enveloping the core was closed by intramolecular N-alkylation with formation of the pyridinium unit; the reaction proceeded site- and chemoselectively in the presence of an a priori more basic tertiary amine.

摘要

基于近年来在选择性控制方面的进展,首次完成了四环海洋吡啶𬭩生物碱的全合成:虽然许多经典方法无法提供目标物中明显简单的含吡啶核心,但镍/铱光氧化还原双催化允许在良好收率下形成关键的 C-C 键。同样,尽管炔烃催化剂的固有路易斯酸性 Mo(+6)中心,但在无阻碍吡啶的存在下,闭环炔烃复分解(RCAM)反应效果良好。最后,铱催化的硅氢化反应在不影响相邻吡啶和侧双键的情况下,对叔酰胺的还原非常有效;这种转化在很大程度上是前所未有的。第二个包围核心的刚性大环通过形成吡啶𬭩单元的分子内 N-烷基化来闭合;在具有更高碱性的叔胺存在下,该反应具有位置和化学选择性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d2a3/9826155/3d0ce8b56f36/ANIE-61-0-g001.jpg

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