Crich David, Yao Qingjia
Department of Chemistry, University of Illinois at Chicago, 845 West Taylor Street, Chicago, IL 60607-7061, USA.
J Am Chem Soc. 2004 Jul 7;126(26):8232-6. doi: 10.1021/ja048070j.
An approach to the stereocontrolled synthesis of beta-d-rhamnopyranosides is described in which 2,3-O-benzyl or related 4,6-O-[alpha-(2-(2-iodophenyl)ethylthiocarbonyl)benzylidene]-mannosyl thioglycosides are first used to introduce the beta-d-mannopyranoside linkage in high yield and stereoselectivity. Following glycosylation, treatment with tributyltin hydride in toluene at reflux brings about reductive radical fragmentation directly to the 6-deoxy sugar in high yield. A variation of these donors bearing a carboxylated donor on O3 is a highly alpha-selective mannosyl and, after radical fragmentation, alpha-d-rhamnosyl donor. Using this stereoselective glycosylation/radical-fragmentation approach, a concise synthesis of the title tetrasaccharide is realized in which both the beta-d- and alpha-d-rhamnopyranosyl units are obtained in a single step by a double radical fragmentation of the modified benzylidene acetals.
本文描述了一种立体控制合成β-D-鼠李吡喃糖苷的方法,其中首先使用2,3-O-苄基或相关的4,6-O-[α-(2-(2-碘苯基)乙基硫代羰基)亚苄基]-甘露糖基硫代糖苷以高收率和立体选择性引入β-D-甘露吡喃糖苷键。糖基化后,在甲苯中用三丁基氢化锡回流处理可直接以高收率将其还原自由基断裂为6-脱氧糖。这些在O3上带有羧化供体的供体的变体是一种高度α-选择性的甘露糖基供体,在自由基断裂后是α-D-鼠李糖基供体。使用这种立体选择性糖基化/自由基断裂方法,实现了标题四糖的简洁合成,其中通过修饰的亚苄基缩醛的双自由基断裂在一步中获得了β-D-和α-D-鼠李吡喃糖基单元。