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BiBr介导的氮杂-阿赫马托维奇重排产物的分子内氮杂-普林斯环化反应:去氢骆驼蓬碱和蛇根碱生物碱的不对称全合成

BiBr -Mediated Intramolecular Aza-Prins Cyclization of Aza-Achmatowicz Rearrangement Products: Asymmetric Total Synthesis of Suaveoline and Sarpagine Alkaloids.

作者信息

Cheng Wai Fung, Ma Shiqiang, Lai Yin Tung, Cheung Yuen Tsz, Akkarasereenon Kornkamon, Zhou Yiqin, Tong Rongbiao

机构信息

Department of Chemistry, The Hong Kong University of Science and Technology, Clearwater Bay, Kowloon, Hong Kong, China.

出版信息

Angew Chem Int Ed Engl. 2023 Oct 26;62(44):e202311671. doi: 10.1002/anie.202311671. Epub 2023 Sep 26.

Abstract

An intramolecular aza-Prins cyclization of aza-Achmatowicz rearrangement products was developed in which bismuth tribromide (BiBr ) plays a dual role as an efficient Lewis acid and source of the bromide nucleophile. This approach enables the facile construction of highly functionalized 9-azabicyclo[3.3.1]nonanes (9-ABNs), which are valuable synthetic building blocks and a powerful platform for the synthesis of a variety of alkaloid natural products and drug molecules. Suitable substrates for the aza-Prins cyclization include 1,1-disubstituted alkenes, 1,2-disubstituted alkenes, alkynes, and allenes, with good to excellent yields observed. Finally, we showcase the application of this new approach to the enantioselective total synthesis of six indole alkaloids: (-)-suaveoline (1), (-)-norsuaveoline (2), (-)-macrophylline (3), (+)-normacusine B (4), (+)-N -methyl-16-epipericyclivine (5) and (+)-affinisine (6) in a total of 9-14 steps. This study significantly expands the synthetic utility of the aza-Achmatowicz rearrangement, and the strategy (aza-Achmatowicz/aza-Prins) is expected to be applicable to the total synthesis of other members of the big family of macroline and sarpagine indole alkaloids.

摘要

开发了一种氮杂-Achmatowicz重排产物的分子内氮杂-Prins环化反应,其中三溴化铋(BiBr₃)作为高效路易斯酸和溴化物亲核试剂来源发挥双重作用。该方法能够简便地构建高度官能化的9-氮杂双环[3.3.1]壬烷(9-ABN),它们是有价值的合成砌块,也是合成多种生物碱天然产物和药物分子的强大平台。氮杂-Prins环化反应的合适底物包括1,1-二取代烯烃、1,2-二取代烯烃、炔烃和丙二烯,产率良好至优异。最后,我们展示了这种新方法在六种吲哚生物碱对映选择性全合成中的应用:(-)-甜豆碱(1)、(-)-去甲甜豆碱(2)、(-)-大叶素(3)、(+)-降马库西宁B(4)、(+)-N-甲基-16-表胡椒环碱(5)和(+)-亲和素(6),总共9-14步。这项研究显著扩展了氮杂-Achmatowicz重排的合成效用,并且该策略(氮杂-Achmatowicz/氮杂-Prins)有望应用于大环碱和蛇根碱吲哚生物碱大家族其他成员的全合成。

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