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首页> 外文期刊>International journal of mass spectrometry >Multiple ion/ion reactions in the 3D ion trap: Selective reagent anion production for ETD and PTR from a single compound
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Multiple ion/ion reactions in the 3D ion trap: Selective reagent anion production for ETD and PTR from a single compound

机译:3D离子阱中的多个离子/离子反应:由单一化合物生成ETD和PTR的选择性试剂阴离子

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摘要

Electron transfer dissociation (ETD) is dedicated for the sequence analysis of larger peptides and proteins. It is particularly suited for the identification of post-translational modifications (PTMs), as weakly bonded PTMs like phosphorylation or glycosilation survive the electron-induced fragmentation of the backbone of the amino acid chain. A drawback however is that ETD MS/MS-data of proteins are typically highly complex because a large number of multiply charged fragment ions are obtained. This complexity of the ETD MS/MS-data is significantly reduced when the initial electron-induced fragmentation is followed by a subsequent proton transfer reaction (PTR) to reduce the charge states of the multiple charge fragments. Traditionally ETD and PTR are accomplished using different reagent ions generated from different neutral compounds. Here we show that the formation of reagent anions dedicated for either ETD or PTR can be accomplished from only one neutral compound. By altering the voltage of the negative chemical ionization source (nCl-source) either the odd electron anion (appropriate for ETD) or the even electron anion (appropriate for PTR) is extracted. The PTR-reagent as well as the ETD-reagent are exclusively generated at an appropriate ionization chamber voltage and no further mass selection of the reagent anion is needed. The voltage of the ionization chamber can be switched within milliseconds allowing applications for rapid sequential ion/ion reactions. One of the more interesting sequential ion/ion reactions is the combination of ETD followed by PTR, which make top-down sequencing of intact proteins possible for ion trap instruments.
机译:电子转移解离(ETD)专门用于较大肽和蛋白质的序列分析。它特别适用于翻译后修饰(PTM)的鉴定,因为弱结合的PTM(例如磷酸化或糖基化)在氨基酸链主链的电子诱导断裂后仍能幸免。但是,缺点是蛋白质的ETD MS / MS数据通常非常复杂,因为会获得大量的多电荷碎片离子。当最初的电子诱导的断裂之后进行后续的质子转移反应(PTR)以降低多个电荷片段的电荷状态时,ETD MS / MS数据的这种复杂性将大大降低。传统上,ETD和PTR使用不同中性化合物产生的不同试剂离子来完成。在这里我们表明,仅由一种中性化合物即可完成专用于ETD或PTR的试剂阴离子的形成。通过改变负化学电离源(nCl源)的电压,可以提取奇数电子阴离子(适用于ETD)或偶数电子阴离子(适用于PTR)。 PTR试剂和ETD试剂都是在适当的电离室电压下专门生成的,不需要进一步选择试剂阴离子的质量。电离室的电压可以在几毫秒内切换,从而允许进行快速连续的离子/离子反应。更有趣的顺序离子/离子反应之一是ETD和PTR的结合,这使完整蛋白质的自上而下测序可用于离子阱仪器。

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