首页> 外文期刊>Journal of the American Society for Mass Spectrometry >Mechanisms for the selective gas-phase fragmentation reactions of methionine side chain fixed charge sulfonium ion containing peptides
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Mechanisms for the selective gas-phase fragmentation reactions of methionine side chain fixed charge sulfonium ion containing peptides

机译:甲硫氨酸侧链固定电荷sulf离子含肽的选择性气相裂解反应机理

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摘要

To enable the development of improved tandem mass spectrometry based methods for selective proteome analysis, the mechanisms, product ion structures and other factors influencing the gas-phase fragmentation reactions of methionine side-chain derivatized "fixed-charge" phenacylsulfonium ion containing peptide ions have been examined. bissociation of these peptide ions results in the exclusive characteristic loss of the derivatized side chain, thereby enabling their selective identification. The resultant product ion(s) are then subjected to further dissociation to obtain sequence information for subsequent protein identification. Molecular orbital calculations (at the B3LYP/6-31 + G (d,p) level of theory) performed on a simple peptide model, together with experimental evidence obtained by multistage dissociation of a regioselectively deuterated methionine derivatized sulfoniurn ion containing tryptic peptide, indicate that fragmentation of the fixed charge containing peptide ions occurs via S(N)2 reactions involving the N- and C-terminal amide bonds adjacent to the methionine side chain, resulting in the formation of stable cyclic five- and six-membered iminohydrofuran and oxazine product ions, respectively. These studies further indicate that the rings formed via these neighboring group reactions are stable to further dissociation by MS3. As a consequence, the formation of b- or y-type sequence ions are "skipped" at the site of cyclization. Despite this, complete sequence information is still obtained because of the presence of both cyclic products.
机译:为了开发基于改进的串联质谱的选择性蛋白质组分析方法,已经研究了影响蛋氨酸侧链衍生的“固定电荷”苯并ulf离子的肽离子气相裂解反应的机理,产物离子结构和其他因素。检查。这些肽离子的双缔合导致衍生化的侧链的排他性特征丧失,从而能够对其进行选择性鉴定。然后将所得的产物离子进一步解离以获得序列信息以用于随后的蛋白质鉴定。在简单的肽模型上进行的分子轨道计算(在理论上为B3LYP / 6-31 + G(d,p)水平),以及通过区域选择性氘化的甲硫氨酸衍生的含磺基胰蛋白酶的蛋氨酸多阶段解离而获得的实验证据,表明通过与蛋氨酸侧链相邻的N和C端酰胺键的S(N)2反应发生了含固定电荷的肽离子的碎裂,从而形成了稳定的五元和六元环状亚氨基氢呋喃和恶嗪产物离子。这些研究进一步表明,通过这些邻近基团反应形成的环对于通过MS3进一步解离是稳定的。结果,在环化位点“跳过”了b型或y型序列离子的形成。尽管如此,由于两种环状产物的存在,仍可获得完整的序列信息。

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