Department of Chemistry, Tufts University , 62 Talbot Avenue, Medford, Massachusetts 02155, United States.
J Am Chem Soc. 2014 Apr 16;136(15):5740-4. doi: 10.1021/ja500410c. Epub 2014 Apr 2.
The efficient and stereoselective construction of glycosidic linkages remains one of the most formidable challenges in organic chemistry. This is especially true in cases such as β-linked deoxy-sugars, where the outcome of the reaction cannot be controlled using the stereochemical information intrinsic to the glycosyl donor. Here we show that p-toluenesulfonic anhydride activates 2-deoxy-sugar hemiacetals in situ as electrophilic species, which react stereoselectively with nucleophilic acceptors to produce β-anomers exclusively. NMR studies confirm that, under these conditions, the hemiacetal is quantitatively converted into an α-glycosyl tosylate, which is presumably the reactive species in the reaction. This approach demonstrates that use of promoters that activate hemiacetals as well-defined intermediates can be used to permit stereoselective glycosylation through an SN2-pathway.
糖苷键的高效和立体选择性构建仍然是有机化学中最具挑战性的问题之一。在β-连接的脱氧糖等情况下尤其如此,其中反应的结果不能使用糖基供体固有的立体化学信息来控制。在这里,我们表明对甲苯磺酸酐将 2-脱氧糖半缩醛原位激活为亲电物种,该亲电物种与亲核受体立体选择性反应,仅生成β-异构体。NMR 研究证实,在这些条件下,半缩醛定量转化为α-糖苷基对甲苯磺酸酯,其可能是反应中的反应性物种。这种方法表明,使用可以将半缩醛激活为明确定义的中间体的促进剂,可以通过 SN2 途径实现立体选择性糖苷化。