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基于混合轨道阱质谱仪的 FAIMS 进行全面的单次蛋白质组学分析。

Comprehensive Single-Shot Proteomics with FAIMS on a Hybrid Orbitrap Mass Spectrometer.

机构信息

Thermo Fisher Scientific , San Jose , California 95134 , United States.

Thermo Fisher Scientific , Cambridge , Massachusetts 02139 , United States.

出版信息

Anal Chem. 2018 Aug 7;90(15):9529-9537. doi: 10.1021/acs.analchem.8b02233. Epub 2018 Jul 18.

Abstract

Liquid chromatography (LC) prefractionation is often implemented to increase proteomic coverage; however, while effective, this approach is laborious, requires considerable sample amount, and can be cumbersome. We describe how interfacing a recently described high-field asymmetric waveform ion mobility spectrometry (FAIMS) device between a nanoelectrospray ionization (nanoESI) emitter and an Orbitrap hybrid mass spectrometer (MS) enables the collection of single-shot proteomic data with comparable depth to that of conventional two-dimensional LC approaches. This next generation FAIMS device incorporates improved ion sampling at the ESI-FAIMS interface, increased electric field strength, and a helium-free ion transport gas. With fast internal compensation voltage (CV) stepping (25 ms/transition), multiple unique gas-phase fractions may be analyzed simultaneously over the course of an MS analysis. We have comprehensively demonstrated how this device performs for bottom-up proteomics experiments as well as characterized the effects of peptide charge state, mass loading, analysis time, and additional variables. We also offer recommendations for the number of CVs and which CVs to use for different lengths of experiments. Internal CV stepping experiments increase protein identifications from a single-shot experiment to >8000, from over 100 000 peptide identifications in as little as 5 h. In single-shot 4 h label-free quantitation (LFQ) experiments of a human cell line, we quantified 7818 proteins with FAIMS using intra-analysis CV switching compared to 6809 without FAIMS. Single-shot FAIMS results also compare favorably with LC fractionation experiments. A 6 h single-shot FAIMS experiment generates 8007 protein identifications, while four fractions analyzed for 1.5 h each produce 7776 protein identifications.

摘要

液相色谱 (LC) 预分级通常用于提高蛋白质组学的覆盖率;然而,尽管这种方法有效,但它很繁琐,需要大量的样品量,而且很麻烦。我们描述了如何在纳喷雾电离 (nanoESI) 发射器和轨道阱混合质谱仪 (MS) 之间接口一个最近描述的高场非对称波形离子淌度谱 (FAIMS) 装置,使我们能够收集单次-shot 蛋白质组学数据,其深度可与传统二维 LC 方法相媲美。这个下一代 FAIMS 装置在 ESI-FAIMS 接口处改进了离子采样,增加了电场强度,并使用了不含氦的离子传输气体。通过快速内部补偿电压 (CV) 步长 (25 ms/转换),在 MS 分析过程中可以同时分析多个独特的气相分数。我们全面演示了该装置如何用于自上而下的蛋白质组学实验,并对肽电荷状态、质量负载、分析时间和其他变量的影响进行了特征描述。我们还为不同长度的实验提供了使用多少个 CV 和使用哪些 CV 的建议。内部 CV 步长实验将单个-shot 实验中的蛋白质鉴定数量增加到>8000,在短短 5 小时内鉴定出超过 100000 个肽。在对人细胞系进行的单次 4 小时无标记定量 (LFQ) 实验中,与不使用 FAIMS 的情况下相比,使用 FAIMS 的情况下,我们可以对 7818 种蛋白质进行定量。单次-shot FAIMS 结果也与 LC 分级实验相比具有优势。单次 6 小时 FAIMS 实验产生 8007 个蛋白质鉴定,而每个分析进行 4 个 1.5 小时的分数则产生 7776 个蛋白质鉴定。

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