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A Comparison of Energy-Resolved Vibrational Activation/Dissociation Characteristics of Protonated and Sodiated High Mannose N-Glycopeptides

机译:质子化振动活化/解离特性的能量分辨振动活化/解离特性的比较,高甘露肽N-糖肽

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摘要

Fragmentation of glycopeptides in tandem mass spectrometry (MS/MS) plays a pivotal role in site-specific protein glycosylation profiling by allowing specific oligosaccharide compositions and connectivities to be associated with specific loci on the corresponding protein. Although MS/MS analysis of glycopeptides has been successfully performed using a number of distinction dissociation methods, relatively little is known regarding the fragmentation characteristics of glycopeptide ions with various charge carriers. In this study, energy-resolved vibrational activation/ dissociation was examined via collision-induced dissociation for a group of related high mannose tryptic glycopeptides as their doubly protonated, doubly sodiated, and hybrid protonated sodium adduct ions. The doubly protonated glycopeptide ions with various compositions were found to undergo fragmentation over a relatively low but wide range of collision energies compared with the doubly sodiated and hybrid charged ions, and were found to yield both glycan and peptide fragmentation depending on the applied collision energy. By contrast, the various doubly sodiated glycopeptides were found to dissociate over a significantly higher but narrow range of collision energies, and exhibited only glycan cleavages. Interestingly, the hybrid protonated sodium adduct ions were consistently the most stable of the precursor ions studied, and provided fragmentation information spanning both the glycan and the peptide moieties. Taken together, these findings illustrate the influence of charge carrier over the energyresolved vibrational activation/dissociation characteristics of glycopeptides, and serve to suggest potential strategies that exploit the analytically useful features uniquely afforded by specific charge carriers or combinations thereof.
机译:通过允许特定的低聚糖组合物和与特定蛋白质相关联的特定基因座相关的特异性寡糖组合物和连接在特定的寡糖组合物和连接,在特定于特定的蛋白质糖基化分析中起致枢转作用。尽管使用许多区别解离方法成功地成功地进行了糖肽的MS / MS分析,但是关于糖肽离子与各种电荷载体的碎片特性已知的相对较少。在该研究中,通过碰撞诱导的解离诱导的一组相关高甘露糖胰蛋白酶糖肽作为其双质子化,双相链和杂交质子化钠加合离子来检查能​​量分辨的振动活化/解离。与双链和杂交带电离子相比,发现具有各种组合物的双质子化糖肽离子与各种组合物进行碎片化,并且发现根据所施加的碰撞能量,得到甘草和肽碎片。相比之下,发现各种双糖糖肽在显着更高但窄的碰撞能量范围内解散,并且仅表现出聚糖切割。有趣的是,杂交质子化钠加合离子始终是研究的最稳定的前体离子,并提供了跨越聚糖和肽部分的碎片信息。总之,这些发现说明了电荷载体对糖肽的能量溶解的振动活化/解离特性的影响,并用于提出利用特定电荷载体的特定电荷载流子或其组合唯一提供的分析有用特征的潜在策略。

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