Dransfield Paul J, Gore Paul M, Prokes Ivan, Shipman Michael, Slawin Alexandra M Z
School of Chemistry, University of Exeter, Stocker Road, Exeter, Devon, UK EX4 4QD.
Org Biomol Chem. 2003 Aug 7;1(15):2723-33. doi: 10.1039/b303817c.
The synthesis of 3,4,6-tri-O-acetyl imino D-glucal 2 from D-glucal is reported. This imino glycal participates in a variety of Lewis acid mediated carbon-carbon bond forming reactions by allylic displacement of the C-3 acetate group by added nucleophiles. Allyl silanes, trimethylsilyl enol ethers, alkenes and dialkyl zinc reagents serve as suitable reaction partners. In all the cases studied, the beta-anomer is predominant. Using imino glycal 8, epimeric at C-5, it is established that the configuration at C-5 of the piperidine ring plays a major role in controlling the stereochemical outcome. These results are rationalised by invoking the intermediacy of a conjugated N-acyliminium ion. A short stereocontrolled synthesis of (+)-deoxoprosophylline is achieved using this chemistry. Additionally, imino glucal 2 is transformed into bromo piperidine 16, whose X-ray crystal structure is determined. Bromide 16 participates in palladium catalysed Stille and Suzuki cross-couplings allowing access to C-2 substituted imino sugars 17 and 18. In other studies, imino sugar C-glycosides 21 and 22 are made by combining the Lewis acid mediated carbon-carbon bond forming reactions with stereospecific dihydroxylations.
报道了由D-葡糖醛合成3,4,6-三-O-乙酰基亚氨基D-葡糖醛2的方法。这种亚氨基葡糖醛通过添加的亲核试剂对C-3乙酰基的烯丙基取代,参与多种路易斯酸介导的碳-碳键形成反应。烯丙基硅烷、三甲基硅基烯醇醚、烯烃和二烷基锌试剂可作为合适的反应伙伴。在所研究的所有情况下,β-异头物占主导。使用在C-5处差向异构的亚氨基葡糖醛8,证实哌啶环C-5处的构型在控制立体化学结果中起主要作用。通过调用共轭N-酰基亚胺离子中间体对这些结果进行了合理化解释。利用这种化学方法实现了(+)-脱氧原叶碱的短程立体控制合成。此外,亚氨基葡糖醛2转化为溴代哌啶16,并确定了其X射线晶体结构。溴化物16参与钯催化的Stille和Suzuki交叉偶联反应,从而得到C-2取代的亚氨基糖17和18。在其他研究中,通过将路易斯酸介导的碳-碳键形成反应与立体特异性二羟基化反应相结合,制备了亚氨基糖C-糖苷21和22。