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一种从糖蛋白中释放寡糖进行脱盐的通用方法。

A general approach to desalting oligosaccharides released from glycoproteins.

作者信息

Packer N H, Lawson M A, Jardine D R, Redmond J W

机构信息

Macquarie University Centre for Analytical Biotechnology, School of Biological Sciences, Macquarie University, Sydney, NSW, Australia.

出版信息

Glycoconj J. 1998 Aug;15(8):737-47. doi: 10.1023/a:1006983125913.

Abstract

Desalting of sugar samples is essential for the success of many techniques of carbohydrate analysis such as mass spectrometry, capillary electrophoresis, anion exchange chromatography, enzyme degradation and chemical derivatization. All desalting methods which are currently used have limitations: for example, mixed-bed ion-exchange columns risk the loss of charged sugars, precipitation of salt by a non-aqueous solvent can result in co-precipitation of oligosaccharides, and gel chromatography uses highly crosslinked packings in which separation of small oligosaccharides is difficult to achieve. We demonstrate that graphitized carbon as a solid phase extraction cartridge can be used for the purification of oligosaccharides (or their derivatives) from solutions containing one or more of the following contaminants: salts (including salts of hydroxide, acetate, phosphate), monosaccharides, detergents (sodium dodecyl sulfate and Triton X-100), protein (including enzymes) and reagents for the release of oligosaccharides from glycoconjugates (such as hydrazine and sodium borohydride). There is complete recovery of the oligosaccharides from the adsorbent which can also be used to fractionate acidic and neutral glycans. Specific applications such as clean-up of N-linked oligosaccharides after removal by PNGase F and hydrazine, desalting of O-linked glycans after removal by alkali, on-line desalting of HPAEC-separated oligosaccharides and beta-eliminated alditols prior to electrospray mass spectrometry, and purification of oligosaccharides from urine are described.

摘要

对糖样品进行脱盐处理对于许多碳水化合物分析技术的成功至关重要,这些技术包括质谱分析、毛细管电泳、阴离子交换色谱、酶降解和化学衍生化。目前使用的所有脱盐方法都有局限性:例如,混合床离子交换柱有使带电荷糖损失的风险,非水溶剂使盐沉淀可能导致寡糖共沉淀,而凝胶色谱使用的是高度交联的填料,其中小寡糖难以实现分离。我们证明,作为固相萃取柱的石墨化碳可用于从含有以下一种或多种污染物的溶液中纯化寡糖(或其衍生物):盐(包括氢氧化物、乙酸盐、磷酸盐的盐)、单糖、去污剂(十二烷基硫酸钠和 Triton X - 100)、蛋白质(包括酶)以及用于从糖缀合物释放寡糖的试剂(如肼和硼氢化钠)。寡糖可从吸附剂中完全回收,该吸附剂还可用于分离酸性和中性聚糖。文中描述了具体应用,如用 PNGase F 和肼去除后对 N - 连接寡糖的净化、用碱去除后对 O - 连接聚糖的脱盐、在电喷雾质谱分析之前对 HPAEC 分离的寡糖和 β - 消除的糖醇进行在线脱盐,以及从尿液中纯化寡糖。

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