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首页> 外文期刊>Glycobiology. >Photoswitchable cluster glycosides as tools to probe carbohydrate-protein interactions: synthesis and lectin-binding studies of azobenzene containing multivalent sugar ligands.
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Photoswitchable cluster glycosides as tools to probe carbohydrate-protein interactions: synthesis and lectin-binding studies of azobenzene containing multivalent sugar ligands.

机译:光交换簇状糖苷作为探测碳水化合物-蛋白质相互作用的工具:含多价糖配体的偶氮苯的合成和凝集素结合研究。

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Synthetic cluster glycosides have often been used to unravel mechanisms of carbohydrate-protein interactions. Although synthetic cluster glycosides are constituted on scaffolds to achieve high avidities in lectin binding, there have been no known attempts to modulate the orientations of the sugar clusters with the aid of a functional scaffold onto which the sugar units are linked. Herein, we describe synthesis, physical, and lectin-binding studies of a series of alpha-D-mannopyranoside and beta-D-galactopyranosyl-(1-->4)-beta-D-glucopyranoside glycoclusters that are attached to a photoswitchable azobenzenoid core. These glycoclusters were synthesized by the amidation of amine-tethered glycopyranosides with azobenzene carbonyl chlorides. From kinetic studies, the cis forms of the azobenzene-glycopyranoside derivative were found to be more stable in aqueous solutions than in organic solvents. Molecular modeling studies were performed to estimate the relative geometries of the photoswitchable glycoclusters in the trans- and cis-isomeric forms. Isothermal titration calorimetry (ITC) was employed to assess the binding of these glycoclusters to lectins peanut agglutinin (PNA) and concanavalin A (Con A). Although binding affinities were enhanced several orders higher as the valency of the sugar was increased, a biphasic-binding profile in ITC plots was observed during few glycoclusters lectin-binding processes. The biphasic-binding profile indicates a "cooperativity" in the binding process. An important outcome of this study is that in addition to inherent clustering of the sugar units as a molecular feature, an induced clustering emanates because of the isomerization of the trans form of the azobenzene scaffold to the cis-isomeric form.
机译:合成簇状糖苷经常被用来揭示碳水化合物-蛋白质相互作用的机理。尽管在支架上构成合成簇状糖苷以实现高的凝集素结合亲和力,但是还没有已知的尝试借助于与糖单元相连的功能性支架来调节糖簇的取向。在这里,我们描述了一系列的α-D-甘露吡喃糖苷和β-D-吡喃半乳糖苷-(1-> 4)-β-D-吡喃葡萄糖苷糖簇的合成,物理和凝集素结合研究核心。这些糖簇是通过将胺系的吡喃葡萄糖苷与偶氮苯羰基氯化物酰胺化而合成的。从动力学研究中,发现偶氮苯-吡喃葡萄糖苷衍生物的顺式在水溶液中比在有机溶剂中更稳定。进行分子建模研究以估计反式和顺式异构形式的可光开关糖簇的相对几何形状。等温滴定热法(ITC)用于评估这些糖簇与凝集素,花生凝集素(PNA)和伴刀豆球蛋白A(Con A)的结合。尽管随着糖价的增加,结合亲和力提高了几个数量级,但在很少的糖团凝集素结合过程中,在ITC图中观察到了双相结合曲线。双相结合曲线表明结合过程中的“合作性”。这项研究的重要成果是,除了作为分子特征的糖单元固有的聚类之外,由于偶氮苯支架的反式形式向顺式异构形式的异构化,导致了诱导性聚类。

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