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TracelessPhotolabile Linker Expedites the ChemicalSynthesis of Complex Oligosaccharides by Automated Glycan Assembly

机译:无痕光不稳定性连接剂可加速化学反应自动化糖链组装法合成复杂寡糖

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摘要

Automated glycan assembly (AGA) aims at accelerating access to synthetic oligosaccharides to meet the demand for defined glycans as tools for molecular glycobiology. The linkers used to connect the growing glycan chain to the solid support play a pivotal role in the synthesis strategy as they determine all chemical conditions used during the synthesis and the form of the glycan obtained at the end of it. Here, we describe a traceless photolabile linker used to prepare carbohydrates with a free reducing end. Modification of the o-nitrobenzyl scaffold of the linker is key to high yields and compatibility with the AGA workflow. The assembly of an asymmetrical biantennary N-glycan from oligosaccharide fragments prepared by AGA and linear as well as branched β-oligoglucans is described to illustrate the power of the method. These substrates will serve as standards and biomarkers to examine the unique specificity of glycosyl hydrolases.
机译:自动聚糖组装(AGA)旨在加快合成寡糖的获取,以满足对确定的聚糖作为分子糖生物学工具的需求。用于将生长中的聚糖链连接到固体支持物上的接头在合成策略中起着关键作用,因为它们确定了合成过程中使用的所有化学条件以及在其末端获得的聚糖的形式。在这里,我们描述了一种无痕的光不稳定连接基,该连接基用于制备具有游离还原端的碳水化合物。接头的邻硝基苄基支架的修饰是高产率和与AGA工作流程兼容的关键。描述了由AGA制备的寡糖片段与直链和支链β-寡聚糖组装而成的不对称双天线N-聚糖,以说明该方法的功效。这些底物将用作检查糖基水解酶独特特异性的标准和生物标志物。

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