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(-)-辛那屈林的对映选择性合成与外消旋化。

Enantioselective Synthesis and Racemization of (-)-Sinoracutine.

机构信息

Department of Chemistry, Ludwig-Maximilians-Universität München, 81377, Munich, Germany.

出版信息

Angew Chem Int Ed Engl. 2017 Jan 16;56(3):897-901. doi: 10.1002/anie.201608206. Epub 2016 Dec 19.

Abstract

Sinoracutine is a recently isolated alkaloid with unusual stereochemical and biological properties. It features an unprecedented tetracyclic 6/6/5/5 skeleton that bears an N-methylpyrrolidine ring fused to a cyclopentenone. Interestingly, both enantiomers of sinoracutine have been independently isolated from the same plant, yet the molecule does not appear to occur as a racemate. Here, we present a short synthesis of (-)-sinoracutine that relies on a highly diastereoselective Pauson-Khand reaction and a Mandai-Claisen reaction to install the quaternary stereocenter. Our work establishes the absolute configuration of the levorotatory isomer and suggests that the optical purity of sinoracutine varies in nature due to its gradual racemization. Experimental evidence supports this proposal, and a plausible mechanism for the racemization is provided.

摘要

辛罗卡亭是一种最近分离得到的生物碱,具有不同寻常的立体化学和生物学性质。它具有一个前所未有的四环 6/6/5/5 骨架,其中包含一个与环戊烯酮融合的 N-甲基吡咯烷环。有趣的是,辛罗卡亭的对映异构体均已从同一植物中独立分离出来,但该分子似乎并未以外消旋体形式存在。在这里,我们提出了一种 (-)-辛罗卡亭的简短合成方法,该方法依赖于高度非对映选择性的 Pauson-Khand 反应和 Mandai-Claisen 反应来安装季立体中心。我们的工作确定了左旋异构体的绝对构型,并表明由于其逐渐外消旋化,辛罗卡亭的光学纯度在自然界中会发生变化。实验证据支持了这一假设,并提供了一种可能的外消旋化机制。

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