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通过聚丙烯酰胺凝胶电泳对荧光团标记的碳水化合物进行分析。

The analysis of fluorophore-labeled carbohydrates by polyacrylamide gel electrophoresis.

作者信息

Jackson P

机构信息

Division of Transfusion Medicine, University of Cambridge, UK.

出版信息

Mol Biotechnol. 1996 Apr;5(2):101-23. doi: 10.1007/BF02789060.

DOI:10.1007/BF02789060
PMID:8734424
Abstract

The glycans of glycoconjugates mediate numerous important biological processes. Their separation and structural determination present considerable difficulties because of the small quantities that are available from biological sources and the inherent difficulty of analyzing the wide variety of complex structures that exist. A method for the analysis of reducing saccharides by PAGE that uses specific fluorophore labeling and is simple, rapid, sensitive, and readily available to biological researchers, has been developed. This method is known acronimically either as PAGEFS (PAGE of Fluorophore-labeled Saccharides) or in one commercial format as FACE (Fluorophore-Assisted Carbohydrate Electrophoresis). In the PAGEFS method, saccharides having an aldehydic reducing end group are labeled quantitatively with a fluorophore and then separated with high resolution by PAGE. Two fluorophores, 8-aminonaphthalene-1,3,6-trisulfonic acid (ANTS) and 2-aminoacridone (AMAC), have been used to enable the separation of a variety of saccharide positional isomers, anomers, and epimers. Subpicomolar quantities of individual saccharides can be detected using a sensitive imaging system. Mixtures of oligosaccharides obtained by enzymatic cleavage from glycoproteins can be labeled and electrophoresed to yield an oligosaccharide profile of each protein. AMAC can be used to distinguish unequivocally between acidic and neutral oligosaccharides. Methods of obtaining saccharide sequence information from purified oligosaccharides have been developed using enzymatic degradation. Other applications and the potential of the system are described.

摘要

糖缀合物中的聚糖介导着众多重要的生物学过程。由于从生物来源获取的量很少,且分析现存的各种复杂结构存在固有困难,它们的分离和结构测定面临着相当大的挑战。现已开发出一种通过聚丙烯酰胺凝胶电泳(PAGE)分析还原糖的方法,该方法使用特定的荧光团标记,简单、快速、灵敏,生物研究人员易于掌握。这种方法的缩写名称为PAGEFS(荧光团标记糖的PAGE),或者在一种商业形式中称为FACE(荧光团辅助碳水化合物电泳)。在PAGEFS方法中,具有醛基还原端基的糖类用荧光团进行定量标记,然后通过PAGE进行高分辨率分离。两种荧光团,8-氨基萘-1,3,6-三磺酸(ANTS)和2-氨基吖啶酮(AMAC),已被用于分离各种糖类位置异构体、异头物和差向异构体。使用灵敏的成像系统可以检测到亚皮摩尔量的单个糖类。通过酶促从糖蛋白上切割得到的寡糖混合物可以进行标记并电泳,以产生每种蛋白质的寡糖图谱。AMAC可用于明确区分酸性和中性寡糖。已开发出使用酶促降解从纯化的寡糖中获取糖序列信息的方法。文中还描述了该系统的其他应用和潜力。

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本文引用的文献

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Use of hydrazine to release in intact and unreduced form both N- and O-linked oligosaccharides from glycoproteins.使用肼以完整且未还原的形式从糖蛋白中释放N-连接和O-连接寡糖。
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