van Dongen W D, de Koster C G, Heerma W, Haverkamp J
University of Utrecht, Faculty of Chemistry, Bijvoet Center for Biomolecular Research, The Netherlands.
Rapid Commun Mass Spectrom. 1993 Mar;7(3):241-4. doi: 10.1002/rcm.1290070315.
The mechanism for the formation of C"-type ions from protonated peptides, produced under conditions of fast-atom bombardment and collisional activation was investigated. Comparison of the tandem mass spectra of the [M + H]+ ions of a model peptide and the corresponding [Md + D]+ ions, in which all exchangeable hydrogens are replaced with deuterium, revealed that neither the carboxylic hydrogen nor a hydrogen from a nitrogen atom is involved in the process of migration of a hydrogen which leads to the formation of C"n-type ions. The most feasible position from which the transferred hydrogen originates is that at the first C-atom in the side-chain of the adjacent amino acid.
研究了在快原子轰击和碰撞激活条件下,质子化肽形成C"-型离子的机制。对一种模型肽的[M + H]+离子和相应的[Md + D]+离子(其中所有可交换氢均被氘取代)的串联质谱进行比较,结果表明,羧基氢和氮原子上的氢均未参与导致形成C"n-型离子的氢迁移过程。转移氢最可能的来源位置是相邻氨基酸侧链中的第一个碳原子上的氢。