同源 3-hydroxyfurazan 和 Nitrile 氨基酸的串联质谱分析:协同作用和碎裂过程分析。

IF 1.9 3区 化学 Q3 BIOCHEMICAL RESEARCH METHODS Journal of Mass Spectrometry Pub Date : 2024-05-24 DOI:10.1002/jms.5043
J. Stuart Grossert, Andrew M. J. Crowell, Donatella Boschi, Marco L. Lolli, Robert L. White
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引用次数: 0

摘要

通过串联质谱法(MS/MS)确定结构依赖于对气相离子碎片行为的解释。我们获得了一系列酸性氨基酸杂环模拟物和一系列相关的腈基氨基酸的质谱。通过电喷雾离子化(ESI),所有氨基酸都很容易质子化或去质子化,当离子进行碰撞诱导解离(CID)时,可观察到独特的碎片过程。去质子化杂环显示出 3-hydroxyfurazan 环的键裂解,形成氧代异氰酸酯和互补的去质子化腈氨基酸。去质子化腈氨基酸的进一步破碎在很大程度上取决于烷基腈侧链的长度。α-氰基甘氨酸(链最短)会产生 CO2 和 HCN 的竞争性损失,而 2-氨基-5-氰基戊酸酯(链最长)则会产生水的损失。有趣的是,在 2-氨基-4-氰基丁酸酯中检测到了通过 McLafferty 型破碎过程损失丙烯腈的现象,在 β-氰基丙氨酸酯中观察到了几个竞争过程。在其中一个过程中,氰离子是通过氨、二氧化碳和乙炔的连续损失或通过一步脱羧消除形成的。在另一种方法中,通过乙腈或 HN=CHCO2H 的损失,从 β-氰基丙氨酸中得到互补离子。质子化的 3-hydroxyfurazan 和腈基氨基酸的碎裂导致累积损失(H2O + CO),这种损失在质子化脂肪族 α 氨基酸中很常见。总体而言,多功能 3-hydroxyfurazan 氨基酸的独特破碎行为与带电部位有关,而去质子化腈基氨基酸的破碎则显示了腈基和羧基之间的协同作用。
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Tandem mass spectrometry of homologous 3-hydroxyfurazan and nitrile amino acids: Analysis of cooperative interactions and fragmentation processes

The assignment of structure by tandem mass spectrometry (MS/MS) relies on the interpretation of the fragmentation behavior of gas-phase ions. Mass spectra were acquired for a series of heterocyclic mimetics of acidic amino acids and a related series of nitrile amino acids. All amino acids were readily protonated or deprotonated by electrospray ionization (ESI), and distinctive fragmentation processes were observed when the ions were subjected to collision-induced dissociation (CID). The deprotonated heterocycles showed bond cleavages of the 3-hydroxyfurazan ring with formation of oxoisocyanate and the complementary deprotonated nitrile amino acid. Further fragmentation of the deprotonated nitrile amino acids was greatly dependent on the length of the alkyl nitrile side chain. Competing losses of CO2 versus HCN occurred from α-cyanoglycinate (shortest chain), whereas water was lost from 2-amino-5-cyanopentanoate (longest chain). Interestingly, loss of acrylonitrile by a McLafferty-type fragmentation process was detected for 2-amino-4-cyanobutanoate, and several competing processes were observed for β-cyanoalanate. In one process, cyanide ion was formed either by consecutive losses of ammonia, carbon dioxide, and acetylene or by a one-step decarboxylative elimination. In another, complementary ions were obtained from β-cyanoalanate by loss of acetonitrile or HN=CHCO2H. Fragmentation of the protonated 3-hydroxyfurazan and nitrile amino acids resulted in the cumulative loss (H2O + CO), a loss that is commonly observed for protonated aliphatic α-amino acids. Overall, the distinct fragmentation behavior of the multifunctional 3-hydroxyfurazan amino acids correlated with the charged site, whereas fragmentations of the deprotonated nitrile amino acids showed cooperative interactions between the nitrile and the carboxylate groups.

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来源期刊
Journal of Mass Spectrometry
Journal of Mass Spectrometry 化学-光谱学
CiteScore
5.10
自引率
0.00%
发文量
84
审稿时长
1.5 months
期刊介绍: The Journal of Mass Spectrometry publishes papers on a broad range of topics of interest to scientists working in both fundamental and applied areas involving the study of gaseous ions. The aim of JMS is to serve the scientific community with information provided and arranged to help senior investigators to better stay abreast of new discoveries and studies in their own field, to make them aware of events and developments in associated fields, and to provide students and newcomers the basic tools with which to learn fundamental and applied aspects of mass spectrometry.
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