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Versatile On-Resin Synthesis of High Mannose Glycosylated Asparagine with Functional Handles

机译:多功能柄上树脂合成高甘露糖糖基化天冬酰胺

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摘要

Here we present a synthetic route for solid phase synthesis of N-linked glycoconjugates containing high mannose oligosaccharides which allows the incorporation of useful functional handles on the N-terminus of asparagine. In this strategy, the C-terminus of an Fmoc protected aspartic acid residue is first attached to a solid phase support. The side chain of aspartic acid is protected by a 2-phenylisopropyl protecting group, which allows selective deprotection for the introduction of glycosylation. By using a convergent on-resin glycosylamine coupling strategy, an N-glycosidic linkage is successfully formed on the free side chain of the resin bound aspartic acid with a large high mannose oligosaccharide, Man8GlcNAc2, to yield N-linked high mannose glycosylated asparagine. The use of on-resin glycosylamine coupling provides excellent glycosylation yield, can be applied to couple other types of oligosaccharides, and also makes it possible to recover excess oligosaccharides conveniently after the on-resin coupling reaction. Useful functional handles including an alkene (p-vinylbenzoic acid), an alkyne (4-pentynoic acid), biotin, and 5-carboxyfluorescein are then conjugated onto the N-terminal amine of asparagine on-resin after the removal of the Fmoc protecting group. In this way, useful functional handles are introduced onto the glycosylated asparagine while maintaining the structural integrity of the reducing end of the oligosaccharide. The asparagine side chain also serves as a linker between the glycan and the functional group and preserves the native presentation of N-linked glycan which may aid in biochemical and structural studies. As an example of a biochemical study using functionalized high mannose glycosylated asparagine, a fluorescence polarization assay has been utilized to study the binding of the lectin Concanavalin A (ConA) using 5-carboxyfluorescein labeled high mannose glycosylated asparagine.
机译:在这里,我们提出了固相合成包含高甘露糖寡糖的N-连接的糖缀合物的合成路线,该路线允许在天冬酰胺的N-末端掺入有用的功能手柄。在这种策略中,首先将Fmoc保护的天冬氨酸残基的C末端连接到固相支持物上。天冬氨酸的侧链被2-苯基异丙基保护基保护,该保护基允许选择性地脱保护以引入糖基化。通过使用会聚树脂上的糖基胺偶联策略,成功地在树脂结合的天冬氨酸的游离侧链上与大型高甘露糖寡糖Man8GlcNAc2形成了N-糖苷键,从而生成了N-连接的高甘露糖糖基化的天冬酰胺。树脂上糖基胺偶联的使用提供了优异的糖基化产率,可以用于偶联其他类型的寡糖,并且还可以在树脂上偶联反应后方便地回收过量的寡糖。然后,在除去Fmoc保护基后,将有用的功能性手柄包括烯烃(对乙烯基苯甲酸),炔烃(4-戊酸),生物素和5-羧基荧光素共轭到天冬酰胺树脂上的N-末端胺上。 。以这种方式,将有用的功能手柄引入糖基化的天冬酰胺上,同时保持寡糖还原端的结构完整性。天冬酰胺侧链还充当聚糖和官能团之间的连接基,并保留了N-连接聚糖的天然外观,这可能有助于生物化学和结构研究。作为使用功能化的高甘露糖糖基化天冬酰胺的生化研究的一个实例,荧光偏振测定法已被用于研究使用5-羧基荧光素标记的高甘露糖糖基化天冬酰胺的凝集素伴刀豆球蛋白A(ConA)的结合。

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