Suppr超能文献

b(2+)肽片段的电子捕获解离揭示了酰鎓离子结构的存在。

Electron capture dissociation of b (2+) peptide fragments reveals the presence of the acylium ion structure.

作者信息

Haselmann K F, Budnik B A, Zubarev R A

机构信息

Department of Chemistry, University of Southern Denmark, Campusvej 55, DK-5230 Odense M, Denmark.

出版信息

Rapid Commun Mass Spectrom. 2000;14(23):2242-6. doi: 10.1002/1097-0231(20001215)14:23<2242::AID-RCM158>3.0.CO;2-O.

Abstract

Electron capture dissociation (ECD) of peptides and their fragments has now been extended to b ( n) ( 2+) ions, where it also produced far more structural information than collisional activation. Interestingly, b ( n) ( 2+) ions revealed abundant loss of CO from radical monocations and the presence of c ((n - 1)) ( +.) fragments. The CO loss from peptide radical cations is unusual and was attributed to neutralization of the -C identical with O(+) group in the acylium ion structure, supported by the observation of c ( (n - 1)) ( +.) ions that can only be formed from an open-chain ion. These characteristic features were most prominent for b ( 12)( 2+) ions of renin substrate and least prominent for b ( n) ( 2+) ions of substance P (n = 9,10). Totally, out of seven b ( n) ( 2+) ions studied, CO loss above 3% level was present in all spectra as well as c ( (n - 1))( +.) fragments of three species, suggesting that the acylium ion structure plays a significant role for at least some b ( 2+) ions. This is an unexpected result in view of the literature data for small, singly charged b ions, for which the protonated oxazolone structure is favoured in ab initio calculations. Apparently, more studies are required before extrapolating the small molecule results to large species. The CO loss in ECD can be used for distinguishing between b and y ions in the MS/MS spectrum of larger molecules.

摘要

肽及其片段的电子捕获解离(ECD)现已扩展至b(n)(2+)离子,在此过程中,它产生的结构信息也远比碰撞活化多。有趣的是,b(n)(2+)离子显示出自由基单电荷离子大量损失CO以及存在c((n - 1))(+.)片段。肽自由基阳离子的CO损失并不常见,这归因于酰鎓离子结构中-C≡O(+)基团的中和,c((n - 1))(+.)离子的观察结果支持了这一点,该离子只能由开链离子形成。这些特征在肾素底物的b(12)(2+)离子中最为显著,而在P物质的b(n)(2+)离子(n = 9,10)中最不显著。总体而言,在所研究的7种b(n)(2+)离子中,所有光谱中均存在高于3%水平的CO损失以及三种物质的c((n - 1))(+.)片段,这表明酰鎓离子结构至少对某些b(2+)离子起着重要作用。鉴于小分子单电荷b离子的文献数据,这是一个意外结果,对于小分子单电荷b离子,在从头算计算中质子化恶唑酮结构更受青睐。显然,在将小分子结果外推至大分子之前,还需要进行更多研究。ECD中的CO损失可用于在较大分子的MS/MS谱图中区分b离子和y离子。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验