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经神经酰胺聚糖酶消化并用2-氨基苯甲酰胺进行荧光标记后,对皮摩尔水平的神经节苷脂碳水化合物进行高效液相色谱分析。

High-performance liquid chromatography analysis of ganglioside carbohydrates at the picomole level after ceramide glycanase digestion and fluorescent labeling with 2-aminobenzamide.

作者信息

Wing D R, Garner B, Hunnam V, Reinkensmeier G, Andersson U, Harvey D J, Dwek R A, Platt F M, Butters T D

机构信息

Oxford Glycobiology Institute, Department of Biochemistry, University of Oxford, South Parks Road, Oxford, OX1 3QU, United Kingdom.

出版信息

Anal Biochem. 2001 Nov 15;298(2):207-17. doi: 10.1006/abio.2001.5393.

Abstract

The functional importance of glycolipids has emphasized the need for more sensitive methods of detection, characterization, and quantification than has often been possible using traditional thin-layer chromatographic techniques. We describe the use of ceramide glycanase and HPLC to identify and quantify gangliosides in which the carbohydrate is in Glcbeta1--> linkage with ceramide. Detection of released carbohydrate was by fluorescent labeling with 2-aminobenzamide at the reducing terminal prior to HPLC analysis. Under the conditions described, ceramide glycanase hydrolyzed all of the common gangliosides studied, offering a broad spectrum of specificity. Release and detection of carbohydrate were linear over a wide range (over two orders of magnitude) of micromolar glycolipid substrate concentrations. Use of an N-linked glycan as an internal standard allowed accurate quantification and a recovery of 93% was achieved. The method additionally maintained the sensitivity (chromatographic peaks containing 1 pmol were readily detected from tissue samples) and comparable resolution to related assays. This was shown by the separation, not only of isomeric carbohydrates from the "a" and "b" series, but also of ganglioside carbohydrate differing only by the presence of either N-acetyl- or N-glycolylneuraminic acid. Application of the method to neutral glycosphingolipids and to tissue samples, including 10-microl quantities of plasma, is illustrated. Glycan structures were confirmed by exoglycosidase digestion and/or matrix-assisted laser desorption/ionization mass spectrometry.

摘要

糖脂的功能重要性凸显了对于比传统薄层色谱技术更灵敏的检测、表征和定量方法的需求。我们描述了使用神经酰胺聚糖酶和高效液相色谱法来鉴定和定量碳水化合物以β1-连接与神经酰胺相连的神经节苷脂。在进行高效液相色谱分析之前,通过在还原末端用2-氨基苯甲酰胺进行荧光标记来检测释放的碳水化合物。在所述条件下,神经酰胺聚糖酶水解了所有研究的常见神经节苷脂,具有广泛的特异性。碳水化合物的释放和检测在微摩尔糖脂底物浓度的宽范围内(超过两个数量级)呈线性关系。使用N-连接聚糖作为内标可实现准确定量,回收率达到93%。该方法还保持了灵敏度(从组织样品中很容易检测到含有1皮摩尔的色谱峰)以及与相关检测相当的分辨率。这不仅通过分离“a”和“b”系列的异构体碳水化合物,还通过仅因存在N-乙酰神经氨酸或N-糖基神经氨酸而不同的神经节苷脂碳水化合物得以体现。文中举例说明了该方法在中性糖鞘脂和组织样品(包括10微升血浆)中的应用。聚糖结构通过外切糖苷酶消化和/或基质辅助激光解吸/电离质谱法得以确认。

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