Department of Organic Chemistry, Institute of Biotechnology, University of Granada, Avda. Fuente Nueva, s/n, 18071 Granada, Spain.
Chemistry. 2013 May 17;19(21):6598-612. doi: 10.1002/chem.201300662. Epub 2013 Apr 16.
Treatment of germacrone (1) with different electrophiles, and of its epoxy derivatives germacrone-4,5-epoxide (2), germacrone-1,10-epoxide (3) and isogermacrone-4,5-epoxide (4) with Brönsted/Lewis acids and Ti(III), gives rise to a great structural diversity. Thus, by using a maximum of two steps, the production of more than 40 compounds corresponding to 14 skeletons is described. Computational calculations rationalizing the structural divergence produced are also described. Finally, since some of the compounds generated are bioactive natural sesquiterpenes, the mechanisms of formation of these substances will provide new insights in their biosynthesis.
用不同的亲电试剂处理姜二酮(1)及其环氧衍生物姜二酮-4,5-环氧(2)、姜二酮-1,10-环氧(3)和异姜二酮-4,5-环氧(4),以及用布朗斯台德/路易斯酸和 Ti(III)处理,会产生极大的结构多样性。因此,通过使用最多两步的方法,可以制备超过 40 种对应于 14 种骨架的化合物。还描述了用于合理化产生的结构发散的计算计算。最后,由于生成的一些化合物是具有生物活性的天然倍半萜烯,这些物质的形成机制将为它们的生物合成提供新的见解。