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氢化反应:应用于布雷菲德菌素A的简洁且可扩展的合成

-Hydrogenation: Application to a Concise and Scalable Synthesis of Brefeldin A.

作者信息

Fuchs Michael, Fürstner Alois

机构信息

Max-Planck-Institut für Kohlenforschung, 45470 Mülheim/Ruhr (Germany).

出版信息

Angew Chem Weinheim Bergstr Ger. 2015 Mar 23;127(13):4050-4054. doi: 10.1002/ange.201411618. Epub 2015 Feb 4.

Abstract

The important biochemical probe molecule brefeldin A () has served as an inspirational target in the past, but none of the many routes has actually delivered more than just a few milligrams of product, where documented. The approach described herein is clearly more efficient; it hinges upon the first implementation of ruthenium-catalyzed trans-hydrogenation in natural products total synthesis. Because this unorthodox reaction is selective for the triple bond and does not touch the transannular alkene or the lactone site of the cycloalkyne, it outperforms the classical Birch-type reduction that could not be applied at such a late stage. Other key steps en route to comprise an iron-catalyzed reductive formation of a non-terminal alkyne, an asymmetric propiolate carbonyl addition mediated by a bulky amino alcohol, and a macrocyclization by ring-closing alkyne metathesis catalyzed by a molybdenum alkylidyne.

摘要

重要的生化探针分子布雷菲德菌素A()过去一直是一个具有启发性的目标,但在有记录的情况下,众多路线中没有一条实际得到的产物超过几毫克。本文所述的方法显然更有效;它依赖于钌催化的转移氢化反应首次应用于天然产物全合成。由于这种非传统反应对三键具有选择性,且不影响跨环烯烃或环炔烃的内酯位点,因此它优于无法在如此后期阶段应用的经典Birch型还原反应。通往的其他关键步骤包括铁催化的非末端炔烃的还原形成、由大位阻氨基醇介导的丙炔酸酯羰基不对称加成以及由钼亚烷基催化的闭环炔烃复分解进行的大环化反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a62c/4955225/43da0ed6de28/ANGE-127-4050-g001.jpg

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