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基于构象研究的 (+)-Fastigiatine 的第二代合成。

Second-Generation Synthesis of (+)-Fastigiatine Inspired by Conformational Studies.

机构信息

Department of Chemistry, 1102 Natural Sciences II , University of California-Irvine , Irvine , California 92697 , United States.

出版信息

J Org Chem. 2018 Aug 17;83(16):8914-8925. doi: 10.1021/acs.joc.8b01144. Epub 2018 Jun 26.

Abstract

(+)-Fastigiatine is a complex alkaloid isolated from the alpine club moss Lycopodium fastigatum, most commonly found in New Zealand. It has been the subject of two successful synthetic campaigns. A second-generation route toward fastigiatine was developed to resolve two problematic steps from our initial synthesis. Selective reduction and protection of the C13 ketone improved the yield and reliability of the dibromocarbene ring expansion step. In the prior synthesis, cuprate addition to the C10 enone generated a 1:1 mixture of isomers in an advanced intermediate. Protection of the C13 alcohol with a large silyl group changed the conformational preference of the enone and led to a more selective conjugate addition to produce the desired β-epimer at C10. MacMillan's decarboxylative photoredox addition method proved to be more practical than the prior aminomethyl cuprate addition chemistry. The second-generation synthesis is longer than the original but improves the selectivity and reproducibility of the overall route.

摘要

(+)-Fastigiatine 是一种从高山羊齿石松 Lycopodium fastigatum 中分离出来的复杂生物碱,在新西兰最为常见。它已经经历了两次成功的合成研究。为了解决我们最初合成中两个有问题的步骤,我们开发了一条第二代的 fastigiatine 合成路线。C13 酮的选择性还原和保护提高了二溴卡宾环扩张步骤的产率和可靠性。在之前的合成中,C10 烯酮的铜加合物在一个高级中间体中生成了 1:1 的异构体混合物。用大硅基保护 C13 醇改变了烯酮的构象偏好,并导致更具选择性的共轭加成,从而在 C10 处生成所需的β-差向异构体。MacMillan 的脱羧光还原加成方法比以前的氨甲基铜加合物化学方法更实用。第二代合成比原始合成更长,但提高了整体路线的选择性和重现性。

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