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MSstatsQC: Longitudinal System Suitability Monitoring and Quality Control for Targeted Proteomic Experiments

机译:MSstatsQC:针对目标蛋白质组实验的纵向系统适用性监测和质量控制

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摘要

Selected Reaction Monitoring (SRM) is a powerful tool for targeted detection and quantification of peptides in complex matrices. An important objective of SRM is to obtain peptide quantifications that are (1) suitable for the investigation, and (2) reproducible across laboratories and runs. The first objective is achieved by system suitability tests (SST), which verify that mass spectrometric instrumentation performs as specified. The second objective is achieved by quality control (QC), which provides in-process quality assurance of the sample profile. A common aspect of SST and QC is the longitudinal nature of the data. Although SST and QC have received a lot of attention in the proteomic community, the currently used statistical methods are limited. This manuscript improves upon the statistical methodology for SST and QC that is currently used in proteomics. It adapts the modern methods of longitudinal statistical process control, such as simultaneous and time weighted control charts and change point analysis, to SST and QC of SRM experiments, discusses their advantages, and provides practical guidelines. Evaluations on simulated data sets, and on data sets from the Clinical Proteomics Technology Assessment for Cancer (CPTAC) consortium, demonstrated that these methods substantially improve our ability of real time monitoring, early detection and prevention of chromatographic and instrumental problems. We implemented the methods in an open-source R-based software package MSstatsQC and its web-based graphical user interface. They are available for use stand-alone, or for integration with automated pipelines. Although the examples focus on targeted proteomics, the statistical methods in this manuscript apply more generally to quantitative proteomics.
机译:选择性反应监测(SRM)是用于复杂基质中肽的靶向检测和定量的强大工具。 SRM的一个重要目标是获得肽段定量分析,该定量分析应(1)适合于研究,(2)可在实验室和运行之间重复进行。第一个目标是通过系统适用性测试(SST)来实现的,该测试可验证质谱仪是否按规定执行。第二个目标是通过质量控制(QC)来实现的,该控制可提供样品概况的过程中质量保证。 SST和QC的一个共同方面是数据的纵向性质。尽管SST和QC在蛋白质组学界引起了广泛关注,但当前使用的统计方法仍然有限。该手稿改进了蛋白质组学中目前使用的SST和QC的统计方法。它使SRM实验的SST和QC适应了纵向统计过程控制的现代方法,例如同时和时间加权控制图和变更点分析,并讨论了它们的优点,并提供了实用指南。对模拟数据集以及癌症临床蛋白质组学技术评估(CPTAC)联盟的数据集进行的评估表明,这些方法大大提高了我们实时监控,及早发现和预防色谱及仪器问题的能力。我们在基于开源R的软件包MSstatsQC及其基于Web的图形用户界面中实现了这些方法。它们可以独立使用,也可以与自动化管道集成。尽管示例集中于目标蛋白质组学,但本文中的统计方法更普遍地应用于定量蛋白质组学。

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