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Full-Featured, Real-Time Database Searching Platform Enables Fast and Accurate Multiplexed Quantitative Proteomics

机译:全功能,实时数据库搜索平台可实现快速准确的多路复用定量蛋白质组学

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Multiplexed quantitative analyses of complex proteomes enable deep biological insight. While a multitude of workflows have been developed for multiplexed analyses, the most quantitatively accurate method (SPS-MS3) suffers from long acquisition duty cycles. We built a new, real-time database search (RTS) platform, Orbiter, to combat the SPS-MS3 method's longer duty cycles. RTS with Orbiter eliminates SPS-MS3 scans if no peptide matches to a given spectrum. With Orbiter's online proteomic analytical pipeline, which includes RTS and false discovery rate analysis, it was possible to process a single spectrum database search in less than 10 ms. The result is a fast, functional means to identify peptide spectral matches using Comet, filter these matches, and more efficiently quantify proteins of interest. Importantly, the use of Comet for peptide spectral matching allowed for a fully featured search, including analysis of post-translational modifications, with well-known and extensively validated scoring. These data could then be used to trigger subsequent scans in an adaptive and flexible manner. In this work we tested the utility of this adaptive data acquisition platform to improve the efficiency and accuracy of multiplexed quantitative experiments. We found that RTS enabled a 2-fold increase in mass spectrometric data acquisition efficiency. Orbiter's RTS quantified more than 8000 proteins across 10 proteomes in half the time of an SPS-MS3 analysis (18 h for RTS, 36 h for SPS-MS3).
机译:复合蛋白质素的多重定量分析使得深层生物洞察力。虽然已经开发了用于多路复用分析的多种工作流,但最多定量地准确的方法(SPS-MS3)遭受了长期采集占空比。我们构建了一个新的实时数据库搜索(RTS)平台,轨道器,用于打击SPS-MS3方法的更长占空比。如果没有肽与给定光谱匹配,则带有轨道器的RTS消除了SPS-MS3扫描。使用轨道器的在线蛋白质组学分析管道,包括RTS和FALSE发现率分析,可以在不到10毫秒的频率下处理单频谱数据库搜索。结果是使用彗星鉴定肽光谱匹配,过滤这些匹配,更有效地量化感兴趣的蛋白质。重要的是,使用COMET进行肽光谱匹配,允许全特色搜索,包括分析翻译后修改,具有众所周知的和广泛的验证的评分。然后可以使用这些数据以自适应和灵活的方式触发后续扫描。在这项工作中,我们测试了这种自适应数据采集平台的效用,提高了多路复用定量​​实验的效率和准确性。我们发现RTS使质谱数据采集效率的2倍增加了2倍。在SPS-MS3分析的一半时间(对于RTS,36小时,对于SPS-MS3为RTS,36小时),轨道器的RTS在10个蛋白质中量化了超过8000个蛋白质蛋白。

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