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DirectMS1Quant:无需 MS/MS 的超快定量蛋白质组学。

DirectMS1Quant: Ultrafast Quantitative Proteomics with MS/MS-Free Mass Spectrometry.

机构信息

V. L. Talrose Institute for Energy Problems of Chemical Physics, N. N. Semenov Federal Research Center of Chemical Physics, Russian Academy of Sciences, 119334 Moscow, Russia.

Department of Biochemistry and Molecular Biology, University of Southern Denmark, DK-5230 Odense M, Denmark.

出版信息

Anal Chem. 2022 Sep 27;94(38):13068-13075. doi: 10.1021/acs.analchem.2c02255. Epub 2022 Sep 12.

Abstract

Recently, we presented the DirectMS1 method of ultrafast proteome-wide analysis based on minute-long LC gradients and MS1-only mass spectra acquisition. Currently, the method provides the depth of human cell proteome coverage of 2500 proteins at a 1% false discovery rate (FDR) when using 5 min LC gradients and 7.3 min runtime in total. While the standard MS/MS approaches provide 4000-5000 protein identifications within a couple of hours of instrumentation time, we advocate here that the higher number of identified proteins does not always translate into better quantitation quality of the proteome analysis. To further elaborate on this issue, we performed a one-on-one comparison of quantitation results obtained using DirectMS1 with three popular MS/MS-based quantitation methods: label-free (LFQ) and tandem mass tag quantitation (TMT), both based on data-dependent acquisition (DDA) and data-independent acquisition (DIA). For comparison, we performed a series of proteome-wide analyses of well-characterized (ground truth) and biologically relevant samples, including a mix of UPS1 proteins spiked at different concentrations into an digest used as a background and a set of glioblastoma cell lines. MS1-only data was analyzed using a novel quantitation workflow called DirectMS1Quant developed in this work. The results obtained in this study demonstrated comparable quantitation efficiency of 5 min DirectMS1 with both TMT and DIA methods, yet the latter two utilized a 10-20-fold longer instrumentation time.

摘要

最近,我们提出了基于分钟级 LC 梯度和 MS1 全谱采集的超快蛋白质组分析的 DirectMS1 方法。目前,当使用 5 分钟 LC 梯度和总共 7.3 分钟的运行时间时,该方法在 1%假发现率(FDR)下提供了 2500 种蛋白质的人类细胞蛋白质组深度覆盖。虽然标准的 MS/MS 方法在数小时的仪器时间内可以提供 4000-5000 种蛋白质鉴定,但我们在此提倡,更多的鉴定蛋白质并不总是转化为更好的蛋白质组分析定量质量。为了进一步阐述这个问题,我们使用 DirectMS1 与三种流行的基于 MS/MS 的定量方法(LFQ 和串联质量标签定量(TMT))进行了一对一的定量结果比较,这两种方法都是基于数据依赖采集(DDA)和数据独立采集(DIA)。为了比较,我们对一系列经过良好表征(真实)和具有生物学相关性的样本进行了蛋白质组全分析,包括将不同浓度的 UPS1 蛋白混合物掺入用于背景的酶解物以及一组神经胶质瘤细胞系。仅使用 MS1 数据使用本工作中开发的称为 DirectMS1Quant 的新型定量工作流程进行分析。这项研究的结果表明,5 分钟 DirectMS1 与 TMT 和 DIA 方法具有可比的定量效率,而后两种方法则利用了 10-20 倍更长的仪器时间。

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