A novel latent-active glycosylation strategy has been described that relies on the isomerization of substituted allyl glycosides to give the corresponding vinyl glycosides, which can subsequently be used in Lewis acid-mediated glycosylations. The isomerization reaction was performed by a rhodium catalyst obtained by treating tris(triphenylphosphine)rhodium(I) chloride with n-butyllithium. This catalyst
已经描述了一种新颖的潜在活性糖基化策略,其依赖于取代的烯丙基糖苷的异构化以给出相应的
乙烯基糖苷,其随后可用于
路易斯酸介导的糖基化。通过用
正丁基锂处理三(
三苯基膦)
氯化
铑(I)得到的
铑催化剂进行异构化反应。与使用常规的威尔
金森催化剂相比,该催化剂具有许多有利的性能。糖基化反应对于伯糖醇和仲糖醇均具有高收率,并且端基异构体的选择性可以通过糖基供体的组成和反应条件来控制。新的异构化和糖基化方法使得能够以高度收敛的方式制备具有
生物学重要性的复杂
寡糖。