Department of Chemistry and Biochemistry, University of California, Santa Barbara, California 93106, United States.
J Am Chem Soc. 2011 Feb 9;133(5):1603-8. doi: 10.1021/ja109925g. Epub 2010 Dec 31.
Efficient syntheses of α-cedrene (1), α-pipitzol (2), and sec-cedrenol (3) were carried out using a new method, which was inspired by the proposed biosynthesis of the tricyclic skeleton of cedrol (12). The key transformation begins with the oxidative dearomatization of curcuphenol (5a) followed by an intramolecular [5 + 2] cycloaddition of the respective phenoxonium intermediate across the tethered olefin. The benzylic stereocenter effectively guides the formation of the first two stereocenters during the [5 + 2] reaction. The cascade then terminates with the selective incorporation of acetic acid to generate a third stereocenter, setting it apart from other previous cationic [5 + 2] reactions. The phenolic precursors (5a-h) are constructed from readily available salicylaldehydes, either as the racemate (one pot) or as a specific enantiomer (four pots) by a modification to our method for the generation of ortho-quinone methides (o-QMs).
采用一种新方法高效合成了 α-雪松烯(1)、α-派泊醇(2)和 sec-雪松醇(3),该方法受到 cedrol(12)三环骨架生物合成的启发。关键转化从 curcuphenol(5a)的氧化去芳构化开始,然后是各自的苯氧鎓中间体在桥连烯烃上的分子内[5+2]环加成。苄位立体中心在[5+2]反应中有效地引导前两个立体中心的形成。级联反应随后以乙酸的选择性掺入结束,生成第三个立体中心,使其与其他先前的阳离子[5+2]反应区分开来。酚类前体(5a-h)可由易得的水杨醛构建,通过对我们生成邻醌甲醚(o-QM)方法的修改,可作为外消旋体(一锅法)或特定对映异构体(四锅法)获得。