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基质辅助激光解吸/电离质谱法电离的复杂寡糖的高能碰撞诱导碎裂

High-energy collision-induced fragmentation of complex oligosaccharides ionized by matrix-assisted laser desorption/ionization mass spectrometry.

作者信息

Harvey D J, Bateman R H, Green M R

机构信息

Oxford Glycobiology Institute, Department of Biochemistry, UK.

出版信息

J Mass Spectrom. 1997 Feb;32(2):167-87. doi: 10.1002/(SICI)1096-9888(199702)32:2<167::AID-JMS472>3.0.CO;2-Q.

Abstract

The high-energy CID spectra of the MNa+ ions from 17 underivatized oligosaccharides of the type found attached to asparagine in glycoproteins were examined with a double-focusing mass spectrometer fitted with a tandem orthogonal time-of-flight analyser. Fragment ions were observed throughout the mass range from all compounds and provided considerable structural information in the low-picomole range. The three types of fragmentation that were observed were glycosidic cleavages, cross-ring cleavages and the formation of internal cleavage ions. The major glycosidic fragmentations were B- and Y-type cleavages (Domon and Costello nomenclature). B-cleavages were particularly abundant at GlcNAc residues. Z-ions were absent when glycosidic linkages occurred at the 6-position. Cross-ring cleavages were predominantly of the 1,5X-type, which provided much sequence and branching information. 3,5A cleavages of the core branching mannose residue were often prominent and provided information on the composition of each of the main antennae. Antenna composition was also reflected by a major internal fragment ion formed by elimination of the two GlcNAc residues of the chitobiose core together with the entire antenna at the 3-position of the core branching mannose residue. A further loss of GlcNAc as 221 mass units from this ion in the spectra of the hybrid and complex carbohydrates was indicative of the presence of a "bisecting' (4-linked) GlcNAc substituent. Another prominent internal fragment ion containing a mannose residue and only one GlcNAc, with its substituents, was present in the spectra of the complex sugars when branching of the 3-antenna occurred.

摘要

使用配备串联正交飞行时间分析仪的双聚焦质谱仪,对17种未衍生化的寡糖(其类型为糖蛋白中与天冬酰胺相连的那种)的MNa⁺离子的高能CID光谱进行了研究。在所有化合物的整个质量范围内均观察到了碎片离子,并且在低皮摩尔范围内提供了大量的结构信息。观察到的三种裂解类型为糖苷键裂解、跨环裂解和内部裂解离子的形成。主要的糖苷键裂解为B型和Y型裂解(Domon和Costello命名法)。B型裂解在GlcNAc残基处特别丰富。当糖苷键在6位发生时,Z离子不存在。跨环裂解主要是1,5X型,它提供了许多序列和分支信息。核心分支甘露糖残基的3,5A裂解常常很突出,并提供了关于每个主要天线组成的信息。天线组成也由一个主要的内部碎片离子反映出来,该离子是通过消除壳二糖核心的两个GlcNAc残基以及核心分支甘露糖残基3位的整个天线而形成的。在杂合糖和复合糖的光谱中,该离子进一步损失221质量单位的GlcNAc表明存在一个“平分”(4-连接)的GlcNAc取代基。当3天线发生分支时,复合糖的光谱中存在另一个突出的内部碎片离子,该离子含有一个甘露糖残基和仅一个带有取代基的GlcNAc。

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