Department of Chemistry , University of Chicago , 5735 South Ellis Avenue , Chicago , Illinois 60637 , United States.
J Am Chem Soc. 2019 May 15;141(19):7776-7788. doi: 10.1021/jacs.9b01088. Epub 2019 May 2.
The Laurencia family of C-acetogenins is Nature's largest collection of halogenated natural products, with many of its members possessing a brominated 8-membered cyclic ether among other distinct structural elements. Herein, we demonstrate that a bromonium-induced ring expansion, starting from a common tetrahydrofuran-containing bicyclic intermediate and using the highly reactive bromenium source BDSB (EtSBr·SbClBr), can lead to concise asymmetric total syntheses of microcladallenes A and B, desepilaurallene, laurallene, and prelaureatin. Key advances in this work include (1) the first demonstration that the core bromonium-induced cyclization/ring-expansion can be initiated using an enyne with an internal ether oxygen nucleophile, (2) that reasonable levels of stereocontrol in such processes can be achieved both with and without appended ring systems and stereogenic centers, (3) that several other unique chemoselective transformations essential to building their polyfunctional cores can be achieved, and (4) that a single, common intermediate can lead to five different members of the class encompassing two distinct 8-membered cyclic ether ring collections. Considering this work along with past efforts leading to two other natural products in the collection, we believe the breadth of structures prepared to date affords strong evidence for Nature's potential use of similar processes in fashioning these unique molecules.
Laurencia 家族的 C-乙酰氧基醇是自然界中最大的卤代天然产物集合,其中许多成员除了具有其他独特的结构元素外,还具有一个溴代 8 元环醚。在此,我们证明了一种溴翁诱导的环扩张,从一个常见的含四氢呋喃的双环中间体开始,使用高反应性的溴翁源 BDSB(EtSBr·SbClBr),可以简洁地不对称全合成微克拉丹醇 A 和 B、去表拉夫拉醇、拉夫拉醇和前劳雷嗪。这项工作的主要进展包括:(1)首次证明核心溴翁诱导的环化/环扩张可以使用带有内部醚氧亲核体的炔进行引发;(2)在有和没有附加环系统和手性中心的情况下,都可以实现这种过程的合理水平的立体控制;(3)可以实现构建其多功能核心所需的几个其他独特的化学选择性转化;(4)一个单一的共同中间体可以导致该类的五个不同成员,包括两个不同的 8 元环醚环集合。考虑到这项工作以及过去在该集合中另外两种天然产物的努力,我们相信迄今为止制备的结构的广度为自然界在塑造这些独特分子时可能使用类似过程提供了强有力的证据。