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优化和四极杆轨道阱参数建模以实现单细胞蛋白质组学的灵敏分析。

Optimization and Modeling of Quadrupole Orbitrap Parameters for Sensitive Analysis toward Single-Cell Proteomics.

机构信息

Department of Chemistry, ‡Department of Molecular Biology and Biochemistry, and §Faculty of Health Science, Simon Fraser University , Burnaby, British Columbia V5A 1S6, Canada.

出版信息

J Proteome Res. 2017 Oct 6;16(10):3711-3721. doi: 10.1021/acs.jproteome.7b00416. Epub 2017 Sep 1.

Abstract

Single-cell proteomics represents a field of extremely sensitive proteomic analysis, owing to the minute amount of yet complex proteins in a single cell. Without amplification potential as of nucleic acids, single-cell mass spectrometry (MS) analysis demands special instrumentation running with optimized parameters to maximize the sensitivity and throughput for comprehensive proteomic discovery. To facilitate such analysis, we here investigated two factors critical to peptide sequencing and protein detection in shotgun proteomics, i.e. precursor ion isolation window (IW) and maximum precursor ion injection time (ITmax), on an ultrahigh-field quadrupole Orbitrap (Q-Exactive HF). Counterintuitive to the frequently used proteomic parameters for bulk samples (>100 ng), our experimental data and subsequent modeling suggested a universally optimal IW of 4.0 Th for sample quantity ranging from 100 ng to 1 ng, and a sample-quantity dependent ITmax of more than 250 ms for 1-ng samples. Compared with the benchmark condition of IW = 2.0 Th and ITmax = 50 ms, our optimization generated up to 300% increase to the detected protein groups for 1-ng samples. The additionally identified proteins allowed deeper penetration of proteome for better revealing crucial cellular functions such as signaling and cell adhesion. We hope this effort can prompt single-cell and trace proteomic analysis and enable a rational selection of MS parameters.

摘要

单细胞蛋白质组学代表了一种极其敏感的蛋白质组分析领域,这是因为单个细胞中存在微量但复杂的蛋白质。与核酸没有扩增潜力不同,单细胞质谱(MS)分析需要特殊的仪器,运行时需要优化参数,以最大限度地提高综合蛋白质组发现的灵敏度和通量。为了便于进行这种分析,我们在这里研究了两种在 shotgun 蛋白质组学中对肽测序和蛋白质检测至关重要的因素,即前体离子隔离窗口(IW)和最大前体离子注入时间(ITmax),使用的是超高场四极杆轨道阱(Q-Exactive HF)。与常用于大容量样品(>100ng)的蛋白质组学参数相反,我们的实验数据和后续建模表明,对于 100ng 到 1ng 的样品量,普遍最佳的 IW 为 4.0 Th,对于 1ng 的样品,样品量相关的 ITmax 大于 250ms。与 IW = 2.0 Th 和 ITmax = 50ms 的基准条件相比,我们的优化使 1ng 样品的检测到的蛋白质组增加了高达 300%。额外鉴定的蛋白质可以更深入地了解蛋白质组,更好地揭示关键的细胞功能,如信号转导和细胞黏附。我们希望这项工作能够推动单细胞和痕量蛋白质组学分析,并能够合理选择 MS 参数。

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