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Automated assembly of oligosaccharides containing multiple cis-glycosidic linkages

机译:自动组装包含多个顺式-糖苷键的寡糖

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Automated glycan assembly (AGA) has advanced from a concept to a commercial technology that rapidly provides access to diverse oligosaccharide chains as long as 30-mers. To date, AGA was mainly employed to incorporate trans -glycosidic linkages, where C2 participating protecting groups ensure stereoselective couplings. Stereocontrol during the installation of cis -glycosidic linkages cannot rely on C2-participation and anomeric mixtures are typically formed. Here, we demonstrate that oligosaccharides containing multiple cis- glycosidic linkages can be prepared efficiently by AGA using monosaccharide building blocks equipped with remote participating protecting groups. The concept is illustrated by the automated syntheses of biologically relevant oligosaccharides bearing various cis -galactosidic and cis -glucosidic linkages. This work provides further proof that AGA facilitates the synthesis of complex oligosaccharides with multiple cis- linkages and other biologically important oligosaccharides.
机译:自动聚糖组装(AGA)已从概念发展为商业技术,可快速提供长达30个聚体的各种寡糖链。迄今为止,AGA主要用于结合反式糖苷键,其中C2参与的保护基团确保立体选择性偶联。顺式-糖苷键的安装过程中的立体控制不能依靠C2的参与,通常会形成异头混合物。在这里,我们证明了含有多个顺式糖苷键的寡糖可以通过AGA使用配备有远程参与保护基团的单糖构件来有效地制备。带有各种顺式-半乳糖苷键和顺式-糖苷键的生物学上相关的寡糖的自动合成说明了这一概念。这项工作提供了进一步的证据,证明AGA可以促进具有多个顺式键的复杂寡糖和其他生物学上重要的寡糖的合成。

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