Institute of Atomic and Molecular Sciences, Academia Sinica, P. O. Box 23-166, Taipei, 10617, Taiwan.
Department of Chemistry, National Taiwan Normal University, Taipei, 11677, Taiwan.
Sci Rep. 2018 Apr 3;8(1):5562. doi: 10.1038/s41598-018-23903-4.
Carbohydrates have various functions in biological systems. However, the structural analysis of carbohydrates remains challenging. Most of the commonly used methods involve derivatization of carbohydrates or can only identify part of the structure. Here, we report a de novo method for completely structural identification of underivatised oligosaccharides. This method, which can provide assignments of linkages, anomeric configurations, and branch locations, entails low-energy collision-induced dissociation (CID) of sodium ion adducts that enable the cleavage of selective chemical bonds, a logical procedure to identify structurally decisive fragment ions for subsequent CID, and the specially prepared disaccharide CID spectrum databases. This method was first applied to determine the structures of four underivatised glucose oligosaccharides. Then, high-performance liquid chromatography and a mass spectrometer with a built-in logical procedure were established to demonstrate the capability of the in situ CID spectrum measurement and structural determination of the oligosaccharides in chromatogram. This consolidation provides a simple, rapid, sensitive method for the structural determination of glucose oligosaccharides, and applications to oligosaccharides containing hexoses other than glucose can be made provided the corresponding disaccharide databases are available.
碳水化合物在生物系统中具有多种功能。然而,碳水化合物的结构分析仍然具有挑战性。大多数常用的方法涉及碳水化合物的衍生化,或者只能识别部分结构。在这里,我们报告了一种用于完全结构鉴定未衍生寡糖的新方法。该方法可以提供键的分配、端基构型和支链位置的信息,涉及低能量碰撞诱导解离(CID)的钠离子加合物,能够选择性地切断化学键,这是一种用于确定后续 CID 中结构决定性片段离子的逻辑步骤,以及特别准备的二糖 CID 谱数据库。该方法首先应用于确定四种未衍生葡萄糖寡糖的结构。然后,建立了高效液相色谱和内置逻辑程序的质谱仪,以证明在色谱中进行原位 CID 谱测量和寡糖结构鉴定的能力。这种整合为葡萄糖寡糖的结构鉴定提供了一种简单、快速、灵敏的方法,如果有相应的二糖数据库,也可以应用于除葡萄糖以外的其他己糖的寡糖。