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混合四极杆质量过滤器-径向喷射线性离子阱与智能数据采集助力高多重靶向蛋白质组学

Hybrid Quadrupole Mass Filter-Radial Ejection Linear Ion Trap and Intelligent Data Acquisition Enable Highly Multiplex Targeted Proteomics.

作者信息

Remes Philip M, Jacob Cristina C, Heil Lilian R, Shulman Nicholas, MacLean Brendan X, MacCoss Michael J

机构信息

Thermo Fisher Scientific, 355 River Oaks Parkway, San Jose, California 95134, United States.

Department of Genome Sciences, University of Washington, 3720 15th St. NE, Seattle, Washington 98195, United States.

出版信息

J Proteome Res. 2024 Dec 6;23(12):5476-5486. doi: 10.1021/acs.jproteome.4c00599. Epub 2024 Oct 30.

Abstract

Targeted mass spectrometry (MS) methods are powerful tools for the selective and sensitive analysis of peptides identified in global discovery experiments. Selected reaction monitoring (SRM) is the most widely accepted clinical MS method due to its reliability and performance. However, SRM and parallel reaction monitoring (PRM) are limited in throughput and are typically used for assays with around 100 targets or fewer. Here we introduce a new MS platform featuring a quadrupole mass filter, collision cell, and linear ion trap architecture, capable of targeting 5000-8000 peptides per hour. This high multiplexing capability is facilitated by acquisition rates of 70-100 Hz and real-time chromatogram alignment. We present a Skyline external software tool for building targeted methods based on data-independent acquisition chromatogram libraries or unscheduled analysis of heavy labeled standards. Our platform demonstrates ∼10× lower limits of quantitation (LOQs) than traditional SRM on a triple quadrupole instrument for highly multiplexed assays, due to parallel product ion accumulation. Finally, we explore how analytical figures of merit vary with method duration and the number of analytes, providing insights into optimizing assay performance.

摘要

靶向质谱(MS)方法是在全局发现实验中对已鉴定肽段进行选择性和灵敏分析的强大工具。选择反应监测(SRM)因其可靠性和性能,是临床中最广泛接受的质谱方法。然而,SRM和平行反应监测(PRM)在通量方面存在局限性,通常用于针对约100个或更少靶点的分析。在此,我们介绍一种新的质谱平台,其具有四极杆质量过滤器、碰撞室和线性离子阱结构,每小时能够靶向5000 - 8000个肽段。70 - 100 Hz的采集速率和实时色谱图校准有助于实现这种高多重分析能力。我们展示了一种Skyline外部软件工具,用于基于数据非依赖采集色谱图库或对重标记标准品进行非预定分析来构建靶向方法。由于平行产物离子积累,在高度多重分析中,我们的平台与传统三重四极杆仪器上的SRM相比,定量下限(LOQ)低约10倍。最后,我们探讨了分析性能指标如何随方法持续时间和分析物数量而变化,为优化分析性能提供了见解。

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