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Targeted Data Extraction of the MS/MS Spectra Generated by Data-independent Acquisition: A New Concept for Consistent and Accurate Proteome Analysis

机译:独立于数据的采集所产生的MS / MS光谱的目标数据提取:一致而准确的蛋白质组分析的新概念

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摘要

Most proteomic studies use liquid chromatography coupled to tandem mass spectrometry to identify and quantify the peptides generated by the proteolysis of a biological sample. However, with the current methods it remains challenging to rapidly, consistently, reproducibly, accurately, and sensitively detect and quantify large fractions of proteomes across multiple samples. Here we present a new strategy that systematically queries sample sets for the presence and quantity of essentially any protein of interest. It consists of using the information available in fragment ion spectral libraries to mine the complete fragment ion maps generated using a data-independent acquisition method. For this study, the data were acquired on a fast, high resolution quadrupole-quadrupole time-of-flight (TOF) instrument by repeatedly cycling through 32 consecutive 25-Da precursor isolation windows (swaths). This SWATH MS acquisition setup generates, in a single sample injection, time-resolved fragment ion spectra for all the analytes detectable within the 400–1200 m/z precursor range and the user-defined retention time window. We show that suitable combinations of fragment ions extracted from these data sets are sufficiently specific to confidently identify query peptides over a dynamic range of 4 orders of magnitude, even if the precursors of the queried peptides are not detectable in the survey scans. We also show that queried peptides are quantified with a consistency and accuracy comparable with that of selected reaction monitoring, the gold standard proteomic quantification method. Moreover, targeted data extraction enables ad libitum quantification refinement and dynamic extension of protein probing by iterative re-mining of the once-and-forever acquired data sets. This combination of unbiased, broad range precursor ion fragmentation and targeted data extraction alleviates most constraints of present proteomic methods and should be equally applicable to the comprehensive analysis of other classes of analytes, beyond proteomics.
机译:大多数蛋白质组学研究都使用液相色谱和串联质谱联用来鉴定和定量由生物样品的蛋白水解产生的肽。然而,使用当前方法,快速,一致,可重复,准确和灵敏地检测和定量多个样品中的大部分蛋白质组仍然具有挑战性。在这里,我们提出了一种新的策略,可以系统地查询样本集,以了解是否存在任何感兴趣的蛋白质。它包括使用碎片离子谱库中的可用信息来挖掘使用独立于数据的采集方法生成的完整碎片离子图。对于本研究,通过快速循环通过32个连续的25 Da前驱物隔离窗口(扫描),在快速,高分辨率的四极-四极飞行时间(TOF)仪器上获取了数据。这种SWATH MS采集设置通过一次进样就可生成在400–1200 m / z前体范围内和用户定义的保留时间窗口内可检测到的所有分析物的时间分辨碎片离子谱。我们显示,从这些数据集中提取的碎片离子的合适组合足以特异性地确定4个数量级动态范围内的查询肽,即使在调查扫描中无法检测到所查询肽的前体也是如此。我们还表明,所查询的肽的定量一致性和准确性与所选反应监测(金标准蛋白质组学定量方法)相当。此外,有针对性的数据提取可通过迭代重新获取一劳永逸的数据集来随意进行定量优化和蛋白质探测的动态扩展。无偏,广泛范围的前体离子裂解和目标数据提取的结合减轻了目前蛋白质组学方法的大多数限制,并且应同样适用于蛋白质组学以外的其他类别分析物的综合分析。

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