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首页> 外文期刊>Glycobiology. >Rapid characterization of sugar-binding specificity by in-solution proximity binding with photosensitizers.
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Rapid characterization of sugar-binding specificity by in-solution proximity binding with photosensitizers.

机译:通过与光敏剂的溶液内邻近结合快速表征糖结合特异性。

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Cell-surface carbohydrates are known to participate in many important physiological and pathological activities by interacting with their corresponding proteins or receptors. Although several methods have been developed for studying carbohydrate-protein interactions, one major problem originates from the weak bindings of carbohydrates/proteins that are often lost during repeating wash steps. Herein, we established a homogeneous solution carbohydrate array in which polyacrylamide-based glycans are used for offering a multivalent environment. The method requires no wash step and can be carried out in a high-throughput manner. We characterized the carbohydrate-binding specificities of 11 lectins and 7 antibodies, the majority of which displayed the binding patterns in consistence with previous reports. These results demonstrate that our developed solution carbohydrate array provides a useful alternative that is better than or comparable with the current available methods.
机译:已知细胞表面碳水化合物通过与其相应的蛋白质或受体相互作用而参与许多重要的生理和病理活动。尽管已开发出几种研究碳水化合物与蛋白质相互作用的方法,但一个主要问题是由于碳水化合物/蛋白质的弱结合而引起的,这种结合经常在重复的洗涤步骤中丢失。在本文中,我们建立了均相溶液碳水化合物阵列,其中聚丙烯酰胺基聚糖用于提供多价环境。该方法不需要洗涤步骤并且可以以高通量的方式进行。我们表征了11种凝集素和7种抗体的碳水化合物结合特异性,其中大多数显示出与以前报道一致的结合模式。这些结果表明,我们开发的溶液碳水化合物阵列提供了一种有用的替代方法,该替代方法优于或与当前可用方法相当。

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