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通过反相纳米液相色谱联用CAD-ESI质谱法分析甲基化O-聚糖糖醇

Analysis of methylated O-glycan alditols by reversed-phase NanoLC coupled CAD-ESI mass spectrometry.

作者信息

Hanisch Franz-Georg, Müller Stefan

机构信息

Institute of Biochemistry II, Medical Faculty, University of Cologne, Joseph-Stelzmann-Str. 52, 50931, Köln, Germany.

出版信息

Methods Mol Biol. 2009;534:107-15. doi: 10.1007/978-1-59745-022-5_8.

Abstract

The structural diversity of mucin-type O-glycans (O-GalNAc core-based) exceeds that of N-linked glycans by far. Structural analysis of this type of protein modification is hampered, however, by the unavailability of specific endo-acetylgalactosaminidases that would cleave the intact oligosaccharide from threonine or serine residues. Chemical cleavage is either performed by hydrazinolysis resulting in reducing glycans ready for terminal labeling reactions or by the classical reductive beta-elimination, which yields the chemically inert alditols. Composition and sequence of the O-glycans can be analyzed by mass spectrometry using FAB-, MALDI-, or ESI-ionization technology. A significant increase in sensitivity and a facilitated fragmentation of the sugar chains can be achieved by methylation of free hydroxyl groups according to a modified procedure based on NaOH/DMSO and methyl iodide. Permethylated glycan alditols are readily separated on reversed-phase capillary columns under conditions similar to those used in peptide chromatography, and their sequences can be deduced from MS/MS spectra registered after collision-induced fragmentation of parental proton or sodium adduct ions using a Q-TOF mass spectrometer.

摘要

粘蛋白型O-聚糖(基于O-GalNAc核心)的结构多样性远远超过N-连接聚糖。然而,由于缺乏能够从苏氨酸或丝氨酸残基上切割完整寡糖的特异性内切乙酰半乳糖胺酶,这种类型的蛋白质修饰的结构分析受到了阻碍。化学切割要么通过肼解进行,得到可用于末端标记反应的还原性聚糖,要么通过经典的还原性β-消除进行,得到化学惰性的糖醇。O-聚糖的组成和序列可以使用FAB、MALDI或ESI电离技术通过质谱分析。根据基于NaOH/DMSO和碘甲烷的改进程序对游离羟基进行甲基化,可以显著提高灵敏度并促进糖链的碎片化。全甲基化聚糖糖醇在类似于肽色谱所用的条件下,很容易在反相毛细管柱上分离,并且可以使用Q-TOF质谱仪从亲本质子或钠加合离子碰撞诱导碎片化后记录的MS/MS光谱中推断出它们的序列。

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