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一种使用平行累积-串联碎裂(PASEF)进行高灵敏度蛋白质组学分析的便捷工作流程。

An accessible workflow for high-sensitivity proteomics using parallel accumulation-serial fragmentation (PASEF).

作者信息

Skowronek Patricia, Wallmann Georg, Wahle Maria, Willems Sander, Mann Matthias

机构信息

Department Proteomics and Signal Transduction, Max Planck Institute of Biochemistry, Martinsried, Germany.

Research and Development, Bruker Belgium nv., Kontich, Belgium.

出版信息

Nat Protoc. 2025 Jan 17. doi: 10.1038/s41596-024-01104-w.

Abstract

Deep and accurate proteome analysis is crucial for understanding cellular processes and disease mechanisms; however, it is challenging to implement in routine settings. In this protocol, we combine a robust chromatographic platform with a high-performance mass spectrometric setup to enable routine yet in-depth proteome coverage for a broad community. This entails tip-based sample preparation and pre-formed gradients (Evosep One) combined with a trapped ion mobility time-of-flight mass spectrometer (timsTOF, Bruker). The timsTOF enables parallel accumulation-serial fragmentation (PASEF), in which ions are accumulated and separated by their ion mobility, maximizing ion usage and simplifying spectra. Combined with data-independent acquisition (DIA), it offers high peak sampling rates and near-complete ion coverage. Here, we explain how to balance quantitative accuracy, specificity, proteome coverage and sensitivity by choosing the best PASEF and DIA method parameters. The protocol describes how to set up the liquid chromatography-mass spectrometry system and enables PASEF method generation and evaluation for varied samples by using the py_diAID tool to optimally position isolation windows in the mass-to-charge and ion mobility space. Biological projects (e.g., triplicate proteome analysis in two conditions) can be performed in 3 d with ~3 h of hands-on time and minimal marginal cost. This results in reproducible quantification of 7,000 proteins in a human cancer cell line in quadruplicate 21-min injections and 29,000 phosphosites for phospho-enriched quadruplicates. Synchro-PASEF, a highly efficient, specific and novel scan mode, can be analyzed by Spectronaut or AlphaDIA, resulting in superior quantitative reproducibility because of its high sampling efficiency.

摘要

深度且准确的蛋白质组分析对于理解细胞过程和疾病机制至关重要;然而,在常规环境中实施具有挑战性。在本方案中,我们将强大的色谱平台与高性能质谱设置相结合,以便为广大群体提供常规但深入的蛋白质组覆盖。这需要基于尖端的样品制备和预形成梯度(Evosep One),并与捕集离子淌度飞行时间质谱仪(timsTOF,布鲁克公司)相结合。timsTOF 能够实现平行累积-串联碎裂(PASEF),即离子根据其离子淌度进行累积和分离,从而最大限度地提高离子利用率并简化光谱。结合数据非依赖采集(DIA),它提供了高的峰采样率和近乎完整的离子覆盖。在此,我们解释如何通过选择最佳的 PASEF 和 DIA 方法参数来平衡定量准确性、特异性、蛋白质组覆盖和灵敏度。该方案描述了如何设置液相色谱-质谱系统,并通过使用 py_diAID 工具在质荷比和离子淌度空间中最佳定位隔离窗口,实现对不同样品的 PASEF 方法生成和评估。生物学项目(例如,在两种条件下进行的三重蛋白质组分析)可以在 3 天内完成,实际操作时间约为 3 小时,边际成本极低。这使得在人癌细胞系中,通过四重 21 分钟进样可对 7000 种蛋白质进行可重复定量,对于磷酸化富集的四重样品可定量 29000 个磷酸化位点。同步 PASEF 是一种高效、特异且新颖的扫描模式,可通过 Spectronaut 或 AlphaDIA 进行分析,由于其高采样效率,具有卓越的定量重现性。

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