首页> 外文期刊>Journal of the American Chemical Society >Ion/molecule reactions of cation radicals formed from protonated polypeptides via gas-phase ion/ion electron transfer - art. no. JA063248I
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Ion/molecule reactions of cation radicals formed from protonated polypeptides via gas-phase ion/ion electron transfer - art. no. JA063248I

机译:由质子化多肽通过气相离子/离子电子转移形成的阳离子自由基的离子/分子反应-技术没有。 JA063248I

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摘要

Cation radicals formed via gas-phase electron transfer to multiply protonated polypeptides have been found to react with molecular oxygen. Such cation radicals are of interest within the context of electron transfer dissociation, a phenomenon with high utility for the characterization of peptide and protein primary structures. Most of the cation radicals show the attachment of O-2 under room temperature storage conditions in an electrodynamic ion trap. At higher temperatures and under conditions of collisional activation, the oxygen adduct species lose O-2, HO circle, or HO2 circle, depending upon the identity of the side chain at the radical site. The fragments containing the C-terminus, the so-called z-ions, which are predominantly radical species, engage in reactions with molecular oxygen. This allows for the facile distinction between z-ions and their complementary even-electron c-ion counterparts. Such a capability has utility in protein identification and characterization via mass spectrometry. Intact electron transfer products also show oxygen attachment. Subsequent activation of such adducts show dissociation behavior very similar to that noted for z-ion adducts. These observations indicate that ion/radical reactions can be used to probe the locations of radical sites in the undissociated electron transfer products as well as distinguish between c- and z-type ions.
机译:已经发现,通过气相电子转移而形成质子化的多肽的阳离子会与分子氧反应。在电子转移解离的背景下,这种阳离子自由基是令人感兴趣的,该现象对于表征肽和蛋白质一级结构具有很高的实用性。大多数阳离子自由基在电动离子阱中的室温存储条件下显示O-2的附着。在更高的温度下以及在碰撞活化的条件下,取决于自由基位点侧链的身份,氧加合物物种会失去O-2,HO环或HO2环。包含C末端(所谓的z离子)的片段主要是自由基物种,与分子氧发生反应。这允许在z离子及其互补的偶电子c离子对应物之间轻松区分。这种能力可用于通过质谱鉴定和表征蛋白质。完整的电子转移产物也显示出氧附着。此类加合物的后续活化显示出与z离子加合物所述的解离行为非常相似。这些观察结果表明,离子/自由基反应可用于探测未离解的电子转移产物中自由基位点的位置,以及区分c型和z型离子。

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