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自由基捕获基团对P物质电子捕获解离光谱的影响。

The effect of radical trap moieties on electron capture dissociation spectra of substance P.

作者信息

Belyayev Marina A, Cournoyer Jason J, Lin Cheng, O'Connor Peter B

机构信息

Department of Chemistry, Boston University, Boston, Massachusetts, USA.

出版信息

J Am Soc Mass Spectrom. 2006 Oct;17(10):1429-1436. doi: 10.1016/j.jasms.2006.06.008. Epub 2006 Jul 27.

Abstract

To further test the hypothesis that electron capture dissociation (ECD) involves long-lived radical intermediates and radical migration occurs within these intermediates before fragmentation, radical trap moieties were attached to peptides with the assumption that they would reduce fragmentation by decreasing the mobility of the radical. Coumarin labels were chosen for the radical traps, and unlabeled, singly-labeled, and doubly-labeled Substance P were analyzed by ECD. The results demonstrated a correlation between the number and position of tags on the peptide and the intensity of side-chain cleavages observed, as well as an inverse correlation between the number of tags on the peptide and the intensity of backbone cleavages. Addition of radical traps to the peptide inhibits backbone cleavages, suggesting that either radical mobility is required for these cleavages, or new noncovalent interactions prevent separation of backbone cleavage fragments. The enhancement of side-chain cleavages and the observation of new side-chain cleavages associated with aromatic groups suggest that the gas-phase conformation of this peptide is substantially distorted from untagged Substance P and involves previously unobserved interactions between the coumarin tags and the phenylalanine residues. Furthermore, the use of a double resonance (DR)-ECD experiment showed that these side-chain losses are all products of long-lived radical intermediate species, which suggests that steric hindrance prevents the coumarin-localized radical from interacting with the backbone while simultaneously increasing the radical rearrangements with the side chains.

摘要

为了进一步验证电子捕获解离(ECD)涉及长寿命自由基中间体且在碎片化之前自由基会在这些中间体内部发生迁移这一假设,将自由基捕获部分连接到肽段上,前提是它们会通过降低自由基的迁移率来减少碎片化。选择香豆素标签作为自由基捕获剂,并通过ECD对未标记、单标记和双标记的P物质进行分析。结果表明,肽段上标签的数量和位置与观察到的侧链裂解强度之间存在相关性,并且肽段上标签的数量与主链裂解强度之间存在负相关。向肽段中添加自由基捕获剂会抑制主链裂解,这表明这些裂解要么需要自由基迁移,要么新的非共价相互作用会阻止主链裂解片段的分离。侧链裂解的增强以及与芳香基团相关的新侧链裂解的观察结果表明,该肽段的气相构象与未标记的P物质相比有很大扭曲,并且涉及香豆素标签与苯丙氨酸残基之间以前未观察到的相互作用。此外,使用双共振(DR)-ECD实验表明,这些侧链损失都是长寿命自由基中间物种的产物,这表明空间位阻阻止了香豆素定位的自由基与主链相互作用,同时增加了与侧链的自由基重排。

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