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串联被困离子淌度谱法。

Tandem trapped ion mobility spectrometry.

机构信息

Department of Chemistry and Biochemistry, Florida State University, Tallahassee, FL 32306-4390, USA.

出版信息

Analyst. 2018 May 15;143(10):2249-2258. doi: 10.1039/c7an02054f.

DOI:10.1039/c7an02054f
PMID:29594263
Abstract

There is currently a strong interest in the use of ion mobility spectrometry-mass spectrometry (IMS-MS) instrumentation for structural biology. In these applications, momentum transfer cross sections derived from IMS-MS measurements are used to reconstruct the three-dimensional analyte structure. Recent reports indicate that additional structural information can be extracted from measuring changes in cross sections in response to changes of the analyte structure. To further this approach, we constructed a tandem trapped IMS analyser (TIMS-TIMS) and incorporated it in a QqTOF mass spectrometer. TIMS-TIMS is constructed by coupling two TIMS analysers via an "interface region" composed of two apertures. We show that peptide oligomers (bradykinin) and native-like protein (ubiquitin) ions can be preserved through the course of an experiment in a TIMS-TIMS analyser. We demonstrate the ability to collisionally-activate as well as to trap mobility-selected ions, followed by subsequent mobility-analysis. In addition to inducing conformational changes, we show that we can fragment low charge states of ubiquitin at >1 mbar between the TIMS analysers with significant sequence coverage. Many fragment ions exhibit multiple features in their TIMS spectra, which means that they may not generally exist as the most stable isomer. The ability of TIMS-TIMS to dissociate mobility-selected protein ions and to measure the cross sections of their fragment ions opens new possibilities for IMS-based structure elucidation.

摘要

目前,人们对使用离子淌度谱-质谱(IMS-MS)仪器进行结构生物学研究非常感兴趣。在这些应用中,从 IMS-MS 测量中得出的动量转移截面被用于重建三维分析物结构。最近的报告表明,通过测量分析物结构变化时截面的变化,可以提取额外的结构信息。为了进一步推进这一方法,我们构建了串联俘获 IMS 分析器(TIMS-TIMS),并将其集成到 QqTOF 质谱仪中。TIMS-TIMS 通过经由由两个孔径组成的“接口区域”将两个 TIMS 分析器耦合而构建。我们表明,肽低聚物(缓激肽)和类似天然的蛋白质(泛素)离子可以在 TIMS-TIMS 分析器中实验过程中保持不变。我们证明了具有碰撞活性以及对迁移率选择离子进行捕获,随后进行后续迁移率分析的能力。除了诱导构象变化外,我们还表明,我们可以在 TIMS 分析器之间以 >1 毫巴的压力使泛素的低电荷态碎片化,具有显著的序列覆盖率。许多片段离子在它们的 TIMS 光谱中表现出多种特征,这意味着它们可能不是最稳定的异构体。TIMS-TIMS 能够使迁移率选择的蛋白质离子解离,并测量其片段离子的截面,为基于 IMS 的结构阐明开辟了新的可能性。

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