Heckrodt Thilo J, Mulzer Johann
Institut für Organische Chemie der Universität Wien, Währingerstrasse 38, A-1090 Wien, Austria.
J Am Chem Soc. 2003 Apr 23;125(16):4680-1. doi: 10.1021/ja034397t.
We describe the first total synthesis of the marine diterpenoid elisabethin A. The synthesis uses (S)-hydroxy-2-methyl-propionate as the chiral starting material, which is elaborated into a dienyl-iodide and added to an aryl acetic acid ester via enolate alkylation. The hydroquinoid system is oxidized to the quinone which serves as the dienophile in a highly stereocontrolled intramolecular Diels-Alder addition. This IMDA reaction, which to our knowledge is the first one to employ a terminal (Z)-diene, proceeds under biomimetic conditions (water, ferrichloride as the oxidant, room temperature) with high yield and stereoselectivity. The Diels-Alder adduct is transformed into the natural product via a three-step sequence including selective hydrogenation, base-catalyzed epimerization of the cis- into the trans-decalin system and O-demethylation.
我们报道了海洋二萜类化合物elisabethin A的首次全合成。该合成以(S)-羟基-2-甲基丙酸酯作为手性起始原料,将其转化为二烯基碘化物,并通过烯醇盐烷基化反应添加到芳基乙酸酯中。对苯二酚体系被氧化为醌,该醌在高度立体控制的分子内狄尔斯-阿尔德加成反应中作为亲双烯体。据我们所知,这种分子内狄尔斯-阿尔德反应是首次使用末端(Z)-二烯的反应,在仿生条件下(水、氯化铁作为氧化剂、室温)以高产率和立体选择性进行。狄尔斯-阿尔德加合物通过三步反应序列转化为天然产物,包括选择性氢化、碱催化的顺式十氢化萘体系向反式十氢化萘体系的差向异构化以及O-去甲基化。