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Enhancing the Receptor Affinity of the Sialic Acid-binding Domain of Vibrio cholerae Sialidase through Multivalency

机译:增强受体亲和力的唾液酸结合域 霍乱弧菌唾液酸酶通过 多价

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摘要

Many glycoside hydrolases possess carbohydrate-binding modules (CBMs) that help target these enzymes to appropriate substrates and increase their catalytic efficiency. The Vibrio cholerae sialidase contains two CBMs, one of which is designated as a family CBM40 module and has been shown through structural and calorimetry studies to recognize the α-anomer of sialic acid with a KD of ∼30 μm at 37 °C. The affinity of this V. cholerae CBM40 module for sialic acid is one of the highest reported for recognition of a monosaccharide by a CBM. As Nature often increases a weak substrate affinity through multivalency, we have explored the potential of developing reagents with an increased affinity for sialic acid receptors through linking CBM40 modules together. The V. cholerae CBM40 was subcloned and crystallized in the presence of sialyllactose confirming its ability to recognize sialic acid. Calorimetry revealed that this CBM40 demonstrated specificity to α(,)-, α(,)-, and α(,)-linked sialosides. Polypeptides containing up to four CBM40 modules in tandem were created to determine if an increase in affinity to sialic acid could be achieved through an avidity effect. Using SPR and a multivalent α(,)-sialyllactose ligand, we show that increasing the number of linked modules does increase the affinity for sialic acid. The four-CBM40 module protein has a 700- to 1500-fold increase in affinity compared with the single-CBM40 module. Varying the linker length of amino acids between each CBM40 module had little effect on the binding of these polypeptides. Finally, fluorescence-activated cell sorting analysis demonstrated that a green fluorescent protein fused to three CBM40 modules bound to subpopulations of human leukocytes. These studies lay the foundation for creating high affinity, multivalent CBMs that could have broad application in glycobiology.
机译:许多糖苷水解酶具有碳水化合物结合模块(CBM),可帮助将这些酶靶向适当的底物并提高其催化效率。霍乱弧菌唾液酸酶含有两个CBM,其中一个被指定为CBM40家族模块,并且通过结构和量热研究表明,它可以在37°C下识别KD为〜30μm的唾液酸的α-异头物。该霍乱弧菌CBM40模块对唾液酸的亲和力是报道的通过CBM识别单糖的最高亲和力之一。由于大自然通常会通过多重价增加弱的底物亲和力,因此我们探索了通过将CBM40模块连接在一起而开发出对唾液酸受体具有更高亲和力的试剂的潜力。霍乱弧菌CBM40在唾液乳糖存在下被亚克隆和结晶,证实了其识别唾液酸的能力。量热法显示该CBM40表现出对α(,)-,α(,)-和 α(,)-连锁 唾液酸。多肽串联包含多达四个CBM40模块 创建以确定是否可以增加对唾液酸的亲和力 通过亲和力效果实现。使用SPR和多价 α(,)-唾液乳糖 配体,我们表明增加链接模块的数量确实增加了 对唾液酸的亲和力。四个CBM40模块蛋白具有700- 与单CBM40模块相比,亲和力提高了1500倍。变化的 每个CBM40模块之间氨基酸的接头长度影响不大 这些多肽的结合。最后是荧光激活细胞 分类分析表明,绿色荧光蛋白融合了三个 CBM40模块与人类白细胞亚群结合。这些研究奠定了 建立可能具有高亲和力,多价CBM的基础 在糖生物学中有广泛的应用。

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