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在线性离子阱中,通过控制加样器停车来实现蛋白质离子电荷状态浓度的控制:离子/分子反应。

Valet Parking for Protein Ion Charge State Concentration: Ion/Molecule Reactions in Linear Ion Traps.

机构信息

Department of Chemistry, Purdue University, West Lafayette, Indiana 47907-2084, United States.

出版信息

Anal Chem. 2020 Apr 7;92(7):5419-5425. doi: 10.1021/acs.analchem.0c00146. Epub 2020 Mar 9.

Abstract

There are several analytical applications in which it is desirable to concentrate analyte ions generated over a range of charge states into a single charge state. This has been demonstrated in the gas phase via ion/ion reactions in conjunction with a technique termed ion parking, which can be implemented in electrodynamic ion traps. Ion parking depends upon the selective inhibition of the reaction of a selected charge state or charge states. In this work, we demonstrate a similar charge state concentration effect using ion/molecule reactions rather than ion/ion reactions. The rates of ion/molecule reactions cannot be affected in the manner used in conventional ion parking. Rather, to inhibit the progression of ion/molecule proton transfer reactions, the product ions must be removed from the reaction cell as they are formed and transferred to an ion trap where no reactions occur. This is accomplished here with mass-selective axial ejection (MSAE) from one linear ion trap to another. The application of MSAE to inhibit ion/molecule reactions is referred to as "valet parking" as it entails the transport of the ions of interest to a remote location for storage. Valet parking is demonstrated using model proteins to concentrate ion signal dispersed over multiple charge states into largely one charge state. Additionally, it has been applied to a simple two-protein mixture of cytochrome and myoglobin.

摘要

有几种分析应用中,希望将在一系列电荷状态下产生的分析物离子集中到单一电荷状态。这已经通过离子/离子反应与一种称为离子泊车的技术在气相中得到证明,该技术可以在电动离子阱中实现。离子泊车取决于对所选电荷状态或电荷状态的反应的选择性抑制。在这项工作中,我们使用离子/分子反应而不是离子/离子反应来证明类似的电荷状态浓缩效应。离子/分子反应的速率不能以传统离子泊车中使用的方式影响。相反,为了抑制离子/分子质子转移反应的进行,必须在形成后将产物离子从反应室中去除,并转移到没有反应发生的离子阱中。在这里,通过从一个线性离子阱到另一个线性离子阱的质量选择轴向喷射(MSAE)来实现这一点。将 MSAE 应用于抑制离子/分子反应被称为“代客泊车”,因为它需要将感兴趣的离子运送到远程位置进行存储。使用模型蛋白来集中分散在多个电荷状态上的离子信号,将其集中到主要的一个电荷状态上,从而证明了代客泊车。此外,它已应用于细胞色素和肌红蛋白的简单两种蛋白混合物。

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