Department of Chemistry, University of Bath, Claverton Down, Bath, BA2 7AY UK.
Chemistry. 2012 Oct 15;18(42):13480-93. doi: 10.1002/chem.201202411. Epub 2012 Sep 13.
Biooxidation of benzoic acid by Ralstonia eutropha B9 provides an unusual cyclohexadiene carboxy diol that contains a quaternary stereocentre. Tricarbonyliron derivatives of this chiron, on treatment with acid, give two isomeric η(5)-cyclohexadienyl complexes as observed by NMR spectroscopy. Both of these can be subjected to the addition of nucleophiles to provide isomeric cyclohexadiene complexes with new substituent patterns, several of which have been characterised crystallographically. De-metallation of these provides a versatile library of cyclohexadiene building blocks, the utility of which is demonstrated by formal syntheses of oseltamivir. The mechanism of product formation and its stereochemical implications are discussed, as are the procedures undertaken to establish the enantiopurity of a representative cyclohexadiene product.
恶臭假单胞菌 B9 对苯甲酸的生物氧化提供了一种不寻常的环己二烯羧酸二醇,其中含有一个季立体中心。通过 NMR 光谱观察,该手性物的三羰基铁衍生物在酸处理下生成两种异构的 η(5)-环己二烯配合物。这两种配合物都可以进行亲核加成,得到具有新取代模式的异构环己二烯配合物,其中几个已通过晶体学方法进行了表征。这些配合物的脱金属化提供了一套通用的环己二烯构建块,其用途通过奥司他韦的正式合成得到了证明。讨论了产物形成的机制及其立体化学意义,以及为确定代表性环己二烯产物的对映体纯度而进行的程序。