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一种合成育亨宾烷类生物碱 venenatine 和 alstovenine 的不同方法。

A divergent approach to the synthesis of the yohimbinoid alkaloids venenatine and alstovenine.

机构信息

Department of Chemistry, University of California, Berkeley, Berkeley, California 94720, USA.

出版信息

Nat Chem. 2013 Feb;5(2):126-31. doi: 10.1038/nchem.1528. Epub 2012 Dec 23.

Abstract

The yohimbinoid alkaloids continue to receive considerable attention from the synthetic community because of their interesting chemical structures and varied biological activity. Although there are several elegant syntheses of certain members of this group of alkaloids, a truly unified approach has yet to be developed. In short, general approaches to this compound class are hampered by a lack of complete control in setting the C(3) stereocentre at a late stage. Herein, we report that a functionalized hydrindanone enables a divergent strategy that builds on existing precedent to address this long-standing challenge. Utilizing an aminonitrile intermediate, the stereochemistry at C(3) of the yohimbinoid skeleton can be controlled effectively in a Pictet-Spengler reaction. We applied this approach to the first total syntheses of the C(3) epimeric natural products venenatine and alstovenine.

摘要

育亨宾型生物碱由于其有趣的化学结构和多样的生物活性,一直受到合成界的广泛关注。尽管已经有几种针对该组生物碱某些成员的优雅合成方法,但尚未开发出真正统一的方法。简而言之,由于在后期无法完全控制 C(3)立体中心,因此针对该化合物类别的一般方法受到阻碍。在这里,我们报告说,一个功能化的水合茚满酮能够实现一种基于现有先例的发散策略,以解决这一长期存在的挑战。利用氨基腈中间体,可以有效地控制育亨宾骨架 C(3)的立体化学,在皮克特-斯彭格勒反应中。我们将这种方法应用于首次全合成 C(3)差向异构体天然产物 venenatine 和 alstovenine。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c3ea/3556932/c95776e1e4b4/nihms420983f1.jpg

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