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Cost-effective generation of precise label-free quantitative proteomes in high-throughput by microLC and data-independent acquisition

机译:通过microLC和独立于数据的采集以高性价比高效生成精确的无标签定量蛋白质组

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摘要

Quantitative proteomics is key for basic research, but needs improvements to satisfy an increasing demand for large sample series in diagnostics, academia and industry. A switch from nanoflowrate to microflowrate chromatography can improve throughput and reduce costs. However, concerns about undersampling and coverage have so far hampered its broad application. We used a QTOF mass spectrometer of the penultimate generation (TripleTOF5600), converted a nanoLC system into a microflow platform, and adapted a SWATH regime for large sample series by implementing retention time- and batch correction strategies. From 3 µg to 5 µg of unfractionated tryptic digests that are obtained from proteomics-typical amounts of starting material, microLC-SWATH-MS quantifies up to 4000 human or 1750 yeast proteins in an hour or less. In the acquisition of 750 yeast proteomes, retention times varied between 2% and 5%, and quantified the typical peptide with 5–8% signal variation in replicates, and below 20% in samples acquired over a five-months period. Providing precise quantities without being dependent on the latest hardware, our study demonstrates that the combination of microflow chromatography and data-independent acquisition strategies has the potential to overcome current bottlenecks in academia and industry, enabling the cost-effective generation of precise quantitative proteomes in large scale.
机译:定量蛋白质组学是基础研究的关键,但需要改进,以满足诊断,学术和工业界对大样本系列不断增长的需求。从纳米流速色谱法转换为微流速色谱法可以提高通量并降低成本。但是,迄今为止,对于欠采样和覆盖范围的担忧已阻碍了其广泛应用。我们使用了倒数第二代的QTOF质谱仪(TripleTOF5600),将nanoLC系统转换为微流平台,并通过实施保留时间和批次校正策略将SWATH方案应用于大型样品系列。从3 µg到5 µg的无分级胰蛋白酶消化物中,这些消化物是从蛋白质组学(通常是蛋白质量)的典型量中获得的,microLC-SWATH-MS在一个小时或更短的时间内即可定量分析多达4000种人或1750种酵母蛋白。在采集750种酵母蛋白质组时,保留时间在2%至5%之间变化,并量化了典型肽段,其中重复的信号变化为5-8%,而在五个月的时间内采集的样品中的信号变化低于20%。我们的研究表明,在不依赖最新硬件的情况下提供精确的数量,我们的研究表明,微流色谱法和与数据无关的采集策略的结合具有克服学术界和工业界当前瓶颈的潜力,从而能够以经济高效的方式产生大量的精确定量蛋白质组学。规模。

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