蛋白质组
计算机科学
再现性
离子
碎片(计算)
离子迁移光谱法
质谱法
化学
分析化学(期刊)
色谱法
生物化学
操作系统
有机化学
作者
Florian Meier,Andreas‐David Brunner,Max Frank,Annie Ha,Isabell Bludau,Eugenia Voytik,Stephanie Kaspar‐Schoenefeld,Markus Lubeck,Oliver Raether,Nicolai Bache,Ruedi Aebersold,Ben C. Collins,Hannes Röst,Matthias Mann
出处
期刊:Nature Methods
[Springer Nature]
日期:2020-11-30
卷期号:17 (12): 1229-1236
被引量:514
标识
DOI:10.1038/s41592-020-00998-0
摘要
Data-independent acquisition modes isolate and concurrently fragment populations of different precursors by cycling through segments of a predefined precursor m/z range. Although these selection windows collectively cover the entire m/z range, overall, only a few per cent of all incoming ions are isolated for mass analysis. Here, we make use of the correlation of molecular weight and ion mobility in a trapped ion mobility device (timsTOF Pro) to devise a scan mode that samples up to 100% of the peptide precursor ion current in m/z and mobility windows. We extend an established targeted data extraction workflow by inclusion of the ion mobility dimension for both signal extraction and scoring and thereby increase the specificity for precursor identification. Data acquired from whole proteome digests and mixed organism samples demonstrate deep proteome coverage and a high degree of reproducibility as well as quantitative accuracy, even from 10 ng sample amounts. diaPASEF makes use of the correlation between the ion mobility and the m/z of peptides to trap and release precursor ions in a TIMS-TOF mass spectrometer for an almost complete sampling of the precursor ion beam with data-independent acquisition.
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