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Stereoselective oxidative glycosylation of anomeric nucleophiles with alcohols and carboxylic acids

机译:端粒亲核体与醇和羧酸的立体选择性氧化糖基化

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摘要

Oligosaccharides, one of the most abundant biopolymers, are involved in numerous biological processes. Although many efforts have been put in preparative carbohydrate chemistry, achieving optimal anomeric and regioselectivities remains challenging. Herein we describe an oxidative glycosylation method between anomeric stannanes and oxygen nucleophiles resulting in the formation of a C−O bond with consistently high anomeric control for glycosyl donors bearing a free C2-hydroxyl group. These reactions are promoted by hypervalent iodine reagents with catalytic or stoichiometric amounts of Cu or Zn salts. The generality of this transformation is demonstrated in 42 examples. Mechanistic studies indicate that the oxidative glycosylation is initiated by the hydroxyl-guided delivery of the hypervalent iodine and tosylate into the anomeric position, and results in excellent 1,2-trans selectivity. The unique mechanistic paradigm, high selectivities, and mild reaction conditions make this method suitable for the synthesis of oligosaccharides and for integration with other methodologies such as automated synthesis.
机译:寡糖是最丰富的生物聚合物之一,涉及许多生物学过程。尽管在制备碳水化合物的化学上已作了许多努力,但实现最佳的端基异构和区域选择性仍然具有挑战性。在本文中,我们描述了异头锡烷与氧亲核试剂之间的氧化糖基化方法,该方法导致形成C-O键,对带有游离C2-羟基的糖基供体具有始终如一的异头控制。这些反应由高价碘试剂与催化或化学计量的Cu或Zn盐促进。在42个示例中演示了此转换的一般性。机理研究表明,氧化糖基化作用是由羟基引导的高价碘和甲苯磺酸盐引入异头物位置而引发的,并具有出色的1,2-反式选择性。独特的机理范式,高选择性和温和的反应条件使该方法适用于寡糖的合成以及与自动合成等其他方法的集成。

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