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首页> 外文期刊>Journal of mass spectrometry: JMS >Structure and further fragmentation of significant [a(3)+Na-H]+ ions from sodium-cationized peptides
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Structure and further fragmentation of significant [a(3)+Na-H]+ ions from sodium-cationized peptides

机译:钠阳离子化肽中重要的[a(3)+ Na-H] +离子的结构和进一步碎片化

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A good understanding of gas-phase fragmentation chemistry of peptides is important for accurate protein identification. Additional product ions obtained by sodiated peptides can provide useful sequence information supplementary to protonated peptides and improve protein identification. In this work, we first demonstrate that the sodiated a(3) ions are abundant in the tandem mass spectra of sodium-cationized peptides although observations of a(3) ions have rarely been reported in protonated peptides. Quantum chemical calculations combined with tandem mass spectrometry are used to investigate this phenomenon by using a model tetrapeptide GGAG. Our results reveal that the most stable [a(3)+Na-H](+) ion is present as a bidentate linear structure in which the sodium cation coordinates to the two backbone carbonyl oxygen atoms. Due to structural inflexibility, further fragmentation of the [a(3)+Na-H](+) ion needs to overcome several relatively high energetic barriers to form [b(2)+Na-H](+) ion with a diketopiperazine structure. As a result, low abundance of [b(2)+Na-H](+) ion is detected at relatively high collision energy. In addition, our computational data also indicate that the common oxazolone pathway to generate [b(2)+Na-H](+) from the [a(3)+Na-H](+) ion is unlikely. The present work provides a mechanistic insight into how a sodium ion affects the fragmentation behaviors of peptides. Copyright (c) 2015 John Wiley & Sons, Ltd.
机译:对肽的气相裂解化学的深入了解对于准确鉴定蛋白质非常重要。通过磺化肽获得的其他产物离子可以提供有用的序列信息,以补充质子化肽并改善蛋白质鉴定。在这项工作中,我们首先证明钠离子化肽段的串联质谱中富含a(3)离子,尽管在质子化肽中很少见到a(3)离子的观察。通过使用模型四肽GGAG,将量子化学计算与串联质谱相结合来研究此现象。我们的结果表明,最稳定的[a(3)+ Na-H](+)离子以双齿线性结构存在,其中钠阳离子与两个主链羰基氧原子配位。由于结构不灵活,[a(3)+ Na-H](+)离子的进一步断裂需要克服几个相对较高的能垒,以与二酮哌嗪形成[b(2)+ Na-H](+)离子结构体。结果,在较高的碰撞能量下检测到[b(2)+ Na-H](+)离子的丰度低。此外,我们的计算数据还表明,不太可能从[a(3)+ Na-H](+)离子生成[b(2)+ Na-H](+)的常见恶唑酮途径。本工作提供了有关钠离子如何影响肽的片段化行为的机制的见解。版权所有(c)2015 John Wiley&Sons,Ltd.

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