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首页> 外文期刊>Rapid Communications in Mass Spectrometry: RCM >Substituent effects on the gas-phase fragmentation reactions of sulfonium ion containing peptides
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Substituent effects on the gas-phase fragmentation reactions of sulfonium ion containing peptides

机译:取代基对含sulf离子肽气相裂解反应的影响

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The multistage mass spectrometric (MS/MS and MS) gas-phase fragmentation reactions of methionine side-chain sulfonium ion containing peptides formed by reaction with a series of para-substituted phenacyl bromide (XBr where X = CH2COC6H4R, and R = -COOH, -COOCH3, -H, -CH3 and -CH2CH3) alkylating reagents have been examined in a linear quadrupole ion trap mass spectrometer. MS/MS of the singly (M+) and multiply ([M++nH]((n+1)+)) charged precursor ions results in exclusive dissociation at the fixed charge containing side chain, independently of the amino acid composition and precursor ion charge state (i.e., proton mobility). However, loss of the methylphenacyl sulfide side-chain fragment as a neutral versus charged (protonated) species was observed to be highly dependent on the proton mobility of the precursor ion, and the identity of the phenacyl group para-substituent. Molecular orbital calculations were performed at the B3LYP/ 6-31+G** level of theory to calculate the theoretical proton affinities of the neutral side-chain fragments. The log of the ratio of neutral versus protonated side-chain fragment losses from the derivatized side chain were found to exhibit a linear dependence on the proton affinity of the side-chain fragmentation product, as well as the proton affinities of the peptide product ions. Finally, MS3 dissociation of the nominally identical neutral and protonated loss product ions formed by MS/MS of the [M++H](2+) and [M++2H](3+) precursor ions, respectively, from the peptide GAILM(X)GAILK revealed significant differences in the abundances of the resultant product ions. These results suggest that the protonated peptide product ions formed by gas-phase fragmentation of sulfonium ion containing precursors in an ion trap mass spectrometer do not necessarily undergo intramolecular proton 'scrambling' prior to their further dissociation, in contrast to that previously demonstrated for peptide ions introduced by external ionization sources. Copyright (c) 2007 John Wiley & Sons, Ltd.
机译:通过与一系列对位取代的苯甲酰溴(XBr,其中X = CH2COC6H4R,R = -COOH,XB)反应形成的含蛋氨酸侧链sulf离子的肽段的多阶段质谱分析(MS / MS和MS) -COOCH3,-H,-CH3和-CH2CH3)烷基化试剂已在线性四极离子阱质谱仪中进行了检查。单(M +)和乘以([M ++ nH]((n + 1)+))的前体离子的MS / MS导致含固定电荷的侧链的排他解离,与氨基酸组成和前体无关离子电荷状态(即质子迁移率)。然而,观察到甲基苯甲酰硫侧链片段作为中性对带电(质子化)物种的损失高度依赖于前体离子的质子迁移率以及对苯甲酰基对位取代基的身份。在理论的B3LYP / 6-31 + G **水平上进行分子轨道计算,以计算中性侧链片段的理论质子亲和力。发现衍生化的侧链的中性和质子化侧链片段损失的比率的对数显示出对侧链片段化产物的质子亲和力以及肽产物离子的质子亲和力的线性依赖性。最后,分别由[M ++ H](2+)和[M ++ 2H](3+)前体离子的MS / MS形成的名义上相同的中性和质子化损失产物离子的MS3解离GAILM(X)GAILK显示出所得产物离子丰度的显着差异。这些结果表明,由离子阱质谱仪中含sulf离子前体的气相裂解形成的质子化肽产物离子在进一步解离之前并不一定经过分子内质子“扰乱”,这与先前对肽离子所证明的相反。由外部电离源引入。版权所有(c)2007 John Wiley&Sons,Ltd.

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