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通过开发Larock/Buchwald-Hartwig环化/环化反应实现吡咯并亚氨基醌生物碱的发散性全合成。

Divergent total syntheses of pyrroloiminoquinone alkaloids enabled by the development of a Larock/Buchwald-Hartwig annulation/cyclization.

作者信息

Rezgui Samir P, Farhi Jonathan, Yu Hao, Sercel Zachary P, Virgil Scott C, Stoltz Brian M

机构信息

Warren and Katharine Schlinger Laboratory for Chemistry and Chemical Engineering, Division of Chemistry and Chemical Engineering, California Institute of Technology Pasadena CA 91125 USA

出版信息

Chem Sci. 2024 Jun 27;15(31):12284-12290. doi: 10.1039/d4sc02981j. eCollection 2024 Aug 7.

Abstract

Pyrroloiminoquinone alkaloids are a large class of natural products that display a wide range of biological activities. Synthetic approaches to these natural products typically rely on a common late-stage C10-oxygenated pyrroloiminoquinone intermediate, but these strategies often lead to lengthy synthetic sequences that are not amenable to divergent syntheses. We devised an alternative approach aimed at the early introduction of the C10 nitrogen, which we hypothesized would enable late-stage diversification. This strategy hinged upon a Larock/Buchwald-Hartwig annulation/cyclization to quickly access the core of these alkaloids. We report the development of this cascade process, which was facilitated by a dual ligand system in addition to selective functionalization of the key intermediate, to provide efficient syntheses of makaluvamines A, C, and D and isobatzelline B, and the first total synthesis of makaluvamine N.

摘要

吡咯并咪唑醌生物碱是一大类天然产物,具有广泛的生物活性。合成这些天然产物的方法通常依赖于常见的后期C10氧化吡咯并咪唑醌中间体,但这些策略往往导致冗长的合成序列,不适合进行发散合成。我们设计了一种替代方法,旨在早期引入C10氮,我们假设这将能够实现后期多样化。该策略基于Larock/Buchwald-Hartwig环化反应来快速获得这些生物碱的核心结构。我们报道了这一级联反应的开发过程,该过程通过双配体系统以及关键中间体的选择性官能团化得以促进,从而实现了麦角硫因A、C和D以及异巴泽林B的高效合成,以及麦角硫因N的首次全合成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/388c/11304541/3815e6b85ca6/d4sc02981j-f1.jpg

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