Department of Chemistry and Chemical Biology, Cornell University, Baker Laboratory, Ithaca, NY 14853, USA.
Org Biomol Chem. 2014 Jan 14;12(2):330-44. doi: 10.1039/c3ob42191k.
The evolution of the synthetic strategy resulting in a total synthesis of vinigrol is presented. Oxidative dearomatization/intramolecular Diels-Alder cycloaddition has served as the successful cornerstone for all of the approaches. Extensive radical cyclization efforts to form the tetracyclic core resulted in interesting and surprising reaction outcomes, none of which could be advanced to vinigrol. These cyclization obstacles were successfully overcome by using Heck instead of radical cyclizations. The total synthesis features a trifluoroethyl ether protecting group being used for the first time in organic synthesis. The logic of its selection and the group's importance beyond protecting the C8a hydroxyl group is presented along with a discussion of strategies for its removal. Because of the compact tetracyclic cage the route is built around many unusual reaction observations and solutions have emerged. For example, a first of its kind Grob fragmentation reaction featuring a trifluoroethyl leaving group has been uncovered, interesting interrupted selenium dioxide allylic oxidations have been observed as well as intriguing catalyst and counterion dependent directed hydrogenations.
呈现了导致合成威尼醇的总合成的综合策略的演变。氧化脱芳构化/分子内 Diels-Alder 环加成已成为所有方法的成功基石。为形成四环核心进行了广泛的自由基环化努力,但得到的反应结果却很有趣且出人意料,没有一种可以进一步转化为威尼醇。通过使用 Heck 反应而不是自由基环化反应,成功克服了这些环化障碍。该全合成的一个特点是首次在有机合成中使用三氟乙基醚保护基。介绍了其选择的逻辑及其除保护 C8a 羟基外的重要性,以及去除该保护基的策略。由于四环笼状结构紧凑,该路线围绕着许多不寻常的反应观察结果,出现了一些解决方案。例如,首次发现了具有三氟乙基离去基团的 Grob 碎裂反应,观察到有趣的中断硒二氧化物烯丙基氧化,以及有趣的催化剂和抗衡离子依赖性导向氢化。