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Structural characterization of N-glycopeptides by matrix-dependent selective fragmentation of MALDI-TOF/TOF tandem mass spectrometry

机译:N-糖肽的结构表征,通过基质依赖性的MALDI-TOF / TOF串联质谱选择性裂解

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摘要

The matrix-assisted laser desorption/ionization time-of-flight (MALDI-TOF) MS technique described to date has proven to be a convenient and rapid method for identification and characterizations of proteins. However, the general MALDI-TOF MS analysis of complex carbohydrates and glycopeptides still entails special consideration of ionization and the fragmentation characteristics of labile carbohydrate moieties. In this study, an efficient and practical method we termed the matrix-dependent selective fragmentation (MDSF) technique of MALDI-TOF/TOF MS, which allows highly sensitive and reliable fragmentation of oligosaccharides and N-glycopeptides. Results from application of the MDSF technique to TOF/TOF MS analysis demonstrated that in comparison to the conventional postsource decay up to 170 times more sensitive product ion peaks could be obtained. It was also suggested that MDSF generates desired structural information based on the controlled cleavage of the singly charged precursor ion with different electronic excited states made by this method. Ideal product ion peaks observed by MDSF in TOF/TOF MS facilitated structural characterization of complex oligosaccharide derivatives including unstable Neu5Ac and Fuc residues and N-glycopeptides.
机译:迄今为止,已描述的基质辅助激光解吸/电离飞行时间(MALDI-TOF)MS技术已被证明是一种方便,快速的蛋白质鉴定和表征方法。但是,对复杂碳水化合物和糖肽的常规MALDI-TOF MS分析仍需要特别考虑离子化和不稳定碳水化合物部分的裂解特性。在这项研究中,我们将有效而实用的方法称为MALDI-TOF / TOF MS的基质依赖性选择性裂解(MDSF)技术,该技术可实现寡糖和N-糖肽的高度灵敏且可靠的裂解。将MDSF技术应用于TOF / TOF MS分析的结果表明,与传统的后源衰变相比,可获得高达170倍的灵敏产物离子峰。还建议MDSF基于通过该方法进行的具有不同电子激发态的单电荷前体离子的受控裂解,生成所需的结构信息。 MDSF在TOF / TOF MS中观察到的理想产物离子峰促进了复杂寡糖衍生物(包括不稳定的Neu5Ac和Fuc残基以及N-糖肽)的结构表征。

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