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由 2-硝基苯磺酰基甘氨酸去质子化形成的多功能阴离子的碰撞诱导解离引发的多种碎片化途径的特性。

Characterization of multiple fragmentation pathways initiated by collision-induced dissociation of multifunctional anions formed by deprotonation of 2-nitrobenzenesulfonylglycine.

机构信息

Department of Chemistry, Dalhousie University, 6274 Coburg Rd., PO Box 15000, Halifax, NS B3H 4R2, Canada.

出版信息

J Mass Spectrom. 2014 Feb;49(2):168-77. doi: 10.1002/jms.3324.

Abstract

The correlation of anion structure with the fragmentation behavior of deprotonated nitrobenzenesulfonylamino acids was investigated using tandem mass spectrometry, isotopic labeling and computational methods. Four distinct fragmentation pathways resulting from the collision-induced dissociation (CID) of deprotonated 2-nitrobenzenesulfonylglycine (NsGly) were characterized. The unusual loss of the aryl nitro substituent as HONO was the lowest energy process. Subsequent successive losses of CO, HCN and SO2 indicated that an ortho cyclization reaction had accompanied loss of HONO. Other pathways involving rearrangement of the ionized sulfonamide group, dual bond cleavage and intramolecular nucleophilic displacement were proposed to account for the formation of phenoxide, arylsulfinate and arylsulfonamide product ions at higher collision energies. The four distinct fragmentation pathways were consistent with precursor-product relationships established by CID experiments, isotopic labeling results and the formation of analogous product ions from 2,4-dinitrobenzenesulfonylglycine and the Ns derivatives of alanine and 2-aminoisobutyric acid. The computations confirmed a low barrier for ortho cyclization with loss of HONO and feasible energetics for each reaction step in the four pathways. Computations also indicated that three of the fragmentation pathways started from NsGly ionized at the carboxyl group. Overall, the pathways identified for the fragmentation of the NsGly anion differed from processes reported for anions containing a single functional group, demonstrating the importance of functional group interactions in the fragmentation pathways of multifunctional anions.

摘要

使用串联质谱、同位素标记和计算方法研究了负离子结构与去质子化硝基苯磺酰基氨基酸的碎裂行为之间的相关性。表征了四种不同的碎裂途径,这些途径是通过去质子化 2-硝基苯磺酰基甘氨酸(NsGly)的碰撞诱导解离(CID)产生的。芳基硝基取代基作为 HONO 的异常损失是能量最低的过程。随后连续损失 CO、HCN 和 SO2 表明,发生了邻位环化反应,伴随着 HONO 的损失。提出了其他途径来解释在更高碰撞能下形成酚氧离子、芳基亚磺酸盐和芳基磺酰胺产物离子,这些途径涉及离子化磺酰胺基团的重排、双键断裂和分子内亲核取代。这四种不同的碎裂途径与 CID 实验、同位素标记结果以及 2,4-二硝基苯磺酰基甘氨酸和 Ns 衍生的丙氨酸和 2-氨基异丁酸的类似产物离子的形成所建立的前体-产物关系一致。计算结果证实了 HONO 损失的邻位环化具有低能垒,并且在四条途径中的每个反应步骤都具有可行的能量学。计算还表明,这四条碎裂途径中的三条是从 NsGly 离子化的羧基开始的。总的来说,NsGly 负离子碎裂途径与仅含有一个官能团的阴离子的过程不同,这表明官能团相互作用在多功能阴离子的碎裂途径中的重要性。

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