首页> 外文期刊>Glycobiology. >Screening method of carbohydrate-binding proteins in biological sources by capillary affinity electrophoresis and its application to determination of Tulipa gesneriana agglutinin in tulip bulbs.
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Screening method of carbohydrate-binding proteins in biological sources by capillary affinity electrophoresis and its application to determination of Tulipa gesneriana agglutinin in tulip bulbs.

机译:毛细管亲和电泳筛选生物源糖结合蛋白的方法及其在郁金香球茎郁金香凝集素测定中的应用。

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We developed capillary affinity electrophoresis (CAE) to analyze the molecular interaction between carbohydrate chains and proteins in solution state. A mixture of oligosaccharides derived from a glycoprotein was labeled with 8-aminopyrene-1,3,6-trisulfonate (APTS), and used as glycan library without isolation. Interaction of a carbohydrate-binding protein with each oligosaccharide in the mixture could be simultaneously observed, and relative affinities of oligosaccharides toward the protein were accurately determined. In this study, we applied CAE to detect the presence of lectins in some plants (Japanese elderberry bark and tulip bulb). In the crude extract of the elderberry bark, binding activity toward sialo-carbohydrate chains could be easily detected. We also examined the presence of lectins in the crude extract of tulip bulbs and determined the detailed carbohydrate-binding specificity of Tulipa gesneriana agglutinin (TGA), one of the lectins from tulip bulbs. Kinetic studies demonstrated that TGA showed novel carbohydrate-binding specificity and preferentially recognized triantennary oligosaccharides with Gal residues at nonreducing termini and a Fuc residue linked through alpha(1-6) linkage at chitobiose portion of the reducing termini but not tetraantennary carbohydrates. The results described here indicate that CAE will be a valuable method for both screening of lectins in natural sources and determination of their detailed carbohydrate-binding specificities.
机译:我们开发了毛细管亲和电泳(CAE)来分析溶液状态下碳水化合物链和蛋白质之间的分子相互作用。衍生自糖蛋白的寡糖混合物用8-氨基ate-1,3,6-三磺酸盐(APTS)标记,无需分离即可用作聚糖文库。可以同时观察到碳水化合物结合蛋白与混合物中每种寡糖的相互作用,并且可以准确地确定寡糖对蛋白质的相对亲和力。在这项研究中,我们应用CAE检测了某些植物(日本接骨木树皮和郁金香鳞茎)中凝集素的存在。在接骨木树皮的粗提物中,可以很容易地检测到对唾液-碳水化合物链的结合活性。我们还检查了郁金香鳞茎粗提物中凝集素的存在,并确定了郁金香鳞茎凝集素之一的郁金香(Gerena gesneriana)凝集素(TGA)的详细碳水化合物结合特异性。动力学研究表明,TGA显示出新颖的碳水化合物结合特异性和优先识别的三触角寡糖,在非还原性末端带有Gal残基,在还原性末端的壳二糖部分通过alpha(1-6)键连接的Fuc残基,但四触角碳水化合物则没有。此处描述的结果表明,CAE将是筛选天然来源的凝集素和确定其详细的碳水化合物结合特异性的有价值的方法。

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