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How the Arming Participating Moieties can Broaden the Scope of Chemoselective Oligosaccharide Synthesis by Allowing the Inverse Armed-Disarmed Approach

机译:武装参与部分如何通过允许反武装解除武装方法扩大化学选择性寡糖的合成范围

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摘要

A new method for stereocontrolled glycosylation and chemoselective oligosaccharide synthesis has been developed. It has been determined that complete 1,2-trans selectivity can be achieved with the use of a 2-O-picolyl moiety, a novel neighboring group that is capable of efficient participation via a six-membered intermediate. The application of the picolyl concept to glycosidations of thioimidoyl, thioglycosyl, and trichloroacetimidoyl glycosyl donors is demonstrated. The picolyl moiety also retains the glycosyl donor in the armed state, as opposed to conventional acyl participating moieties. We name this new approach the "inverse armed-disarmed" strategy, because it allows for the chemoselective introduction of a 1,2-trans glycosidic linkage prior to other linkages. In the context of the oligosaccharide synthesis, the strategy provides trans-trans and trans-cis patterned oligosaccharides as opposed to classic Fraser-Reid's armed-disarmed approach leading to cis-trans and cis-cis linkages.
机译:已经开发了立体控制糖基化和化学选择性寡糖合成的新方法。已经确定,通过使用2-O-吡啶甲基部分可以实现完全的1,2-反式选择性,2-O-吡啶甲基部分是能够经由六元中间体有效参与的新型相邻基团。证明了将吡啶甲基概念应用于硫亚氨基,硫代糖基和三氯乙酰亚胺基糖基供体的糖基化。与常规的酰基参与部分相反,吡啶甲基部分也将糖基供体保留在武装状态。我们将这种新方法称为“反武装解除武装”策略,因为它允许在其他连接之前进行化学选择性引入1,2-反式糖苷连接。在寡糖合成的背景下,该策略提供了反式-反式和反式-顺式图案化的寡糖,这与经典的Fraser-Reid的武装解除武装方法相反,后者导致顺式-反式和顺式-顺式键合。

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