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桥环喹啉 C NMR 光谱图谱在石松生物碱立体化学阐明中的应用:(-)-蛇菰宁 A 的合成及(-)-高金雀花碱 K 和(-)-高金雀花碱 M(石松洛索林 Y)的结构重定和合成。

Decahydroquinoline Ring C NMR Spectroscopic Patterns for the Stereochemical Elucidation of Phlegmarine-Type Lycopodium Alkaloids: Synthesis of (-)-Serralongamine A and Structural Reassignment and Synthesis of (-)-Huperzine K and (-)-Huperzine M (Lycoposerramine Y).

机构信息

Laboratori de Química Orgànica, Facultat de Farmàcia, IBUB , Universitat de Barcelona , Avenue Joan XXIII s/n , 08028 - Barcelona , Spain.

出版信息

J Nat Prod. 2019 Jun 28;82(6):1576-1586. doi: 10.1021/acs.jnatprod.9b00071. Epub 2019 Jun 5.

Abstract

Analysis of C NMR spectroscopic data of the phlegmarine subset of Lycopodium alkaloids revealed spectral patterns that allowed the stereochemical arrangement of the four stereogenic carbons in the decahydroquinoline core to be established. A relatively simple predictive set of chemical shift combinations is reported, providing a tool for the challenging stereochemical assignment of phlegmarine-type alkaloids. Based on the chemical shifts in their NMR spectroscopic profiles, the alkaloids huperzine K and huperzine M, formally reported as cis derivatives, were structurally reassigned as trans-decahydroquinolines. The NMR spectroscopic data for huperzine M were identical to those reported for lycoposerramine Y and, hence, also implied the configurational reassignment of the latter. The revised structures of the above alkaloids were confirmed by enantioselective total synthesis. Additionally, the synthesis of (-)-serralongamine A via a common intermediate precursor is reported.

摘要

对石松生物碱的石杉堿亚属的 13C NMR 光谱数据分析揭示了光谱模式,这些模式允许确定十氢化喹啉核中四个立体碳的立体化学排列。报道了一组相对简单的预测性化学位移组合,为石杉堿型生物碱具有挑战性的立体化学分配提供了工具。基于其 NMR 光谱特征中的化学位移,正式报告为顺式衍生物的生物碱石杉碱 K 和石杉碱 M 的结构被重新分配为反式-十氢化喹啉。石杉碱 M 的 NMR 光谱数据与报道的石杉堿 Y 相同,因此也暗示了后者的构型重新分配。上述生物碱的修订结构通过对映选择性全合成得到证实。此外,还通过共同的中间前体制备了(-)-蛇足石杉碱 A。

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