Nicolaou K C, Fylaktakidou K C, Mitchell H J, van Delft F L, Rodríguez R M, Conley S R, Jin Z
Department of Chemistry and The Skaggs Institute for Chemical Biology, The Scripps Research Institute, La Jolla, California 92037, USA.
Chemistry. 2000 Sep 1;6(17):3166-85. doi: 10.1002/1521-3765(20000901)6:17<3166::aid-chem3166>3.0.co;2-z.
Methods for the stereocontrolled construction of 1,1'-disaccharides, 2-deoxy glycosides, and orthoesters are reported. Specifically, a tin-acetal moiety was utilized to fix the anomeric stereochemistry of a carbohydrate acceptor leading to an efficient and stereoselective synthesis of 1,1'-disaccharides, while a newly discovered 1,2-phenylseleno migration reaction in carbohydrates opened entries to 2-deoxy glycosides and orthoesters. Thus, reaction of 2-hydroxy phenylselenoglycosides with DAST led to 2-phenylselenoglycosyl fluorides which reacted with carbohydrate acceptors to afford, stereoselectively, 2-phenylselenoglycosides. The latter compounds could be reductively deselenated to 2-deoxy glycosides or oxidatively converted to orthoesters via the corresponding ketene acetals.
报道了1,1'-二糖、2-脱氧糖苷和原酸酯的立体控制构建方法。具体而言,利用锡缩醛部分来固定碳水化合物受体的异头立体化学,从而实现1,1'-二糖的高效立体选择性合成,而碳水化合物中新发现的1,2-苯基硒迁移反应为2-脱氧糖苷和原酸酯的合成开辟了途径。因此,2-羟基苯基硒代糖苷与DAST反应生成2-苯基硒代糖基氟化物,其与碳水化合物受体反应,立体选择性地得到2-苯基硒代糖苷。后者化合物可通过还原脱硒生成2-脱氧糖苷,或通过相应的烯酮缩醛氧化转化为原酸酯。