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Evaluation and optimization of mass spectrometric settings during data-dependent acquisition mode: Focus on LTQ-orbitrap mass analyzers

机译:在依赖数据的采集模式下评估和优化质谱设置:专注于LTQ-orbitrap质量分析仪

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Mass-spectrometry-based proteomics has evolved as the preferred method for the analysis of complex proteomes. Undoubtedly, recent advances in mass spectrometry instrumentation have greatly enhanced proteomic analysis. A popular instrument platform in proteomics research is the LTQ-Orbitrap mass analyzer. In this tutorial, we discuss the significance of evaluating and optimizing mass spectrometric settings on the LTQ-Orbitrap during CID data-dependent acquisition (DDA) mode to improve protein and peptide identification rates. We focus on those MS and MS/MS parameters that have been systematically examined and evaluated by several researchers and are commonly used during DDA. More specifically, we discuss the effect of mass resolving power, preview mode for FTMS scan, monoisotopic precursor selection, signal threshold for triggering MS/MS events, number of microscans per MS/MS scan, number of MS/MS events, automatic gain control target value (ion population) for MS and MS/MS, maximum ion injection time for MS/MS, rapid and normal scan rate, and prediction of ion injection time. We furthermore present data from the latest generation LTQ-Orbitrap system, the Orbitrap Elite, along with recommended MS and MS/MS parameters. The Orbitrap Elite outperforms the Orbitrap Classic in terms of scan speed, sensitivity, dynamic range, and resolving power and results in higher identification rates. Several of the optimized MS parameters determined on the LTQ-Orbitrap Classic and XL were easily transferable to the Orbitrap Elite, whereas others needed to be reevaluated. Finally, the Q Exactive and HCD are briefly discussed, as well as sample preparation, LC-optimization, and bioinformatics analysis. We hope this tutorial will serve as guidance for researchers new to the field of proteomics and assist in achieving optimal results.
机译:基于质谱的蛋白质组学已经发展成为分析复杂蛋白质组学的首选方法。毫无疑问,质谱仪器的最新进展极大地增强了蛋白质组学分析。蛋白质组学研究中流行的仪器平台是LTQ-Orbitrap质量分析仪。在本教程中,我们讨论在CID数据依赖采集(DDA)模式下评估和优化LTQ-Orbitrap质谱设置的重要性,以提高蛋白质和多肽的识别率。我们专注于一些研究人员已经系统地检查和评估的MS和MS / MS参数,这些参数通常在DDA中使用。更具体地说,我们讨论质量分辨能力,FTMS扫描的预览模式,单同位素前体选择,触发MS / MS事件的信号阈值,每次MS / MS扫描的微扫描次数,MS / MS事件的次数,自动增益控制的影响MS和MS / MS的目标值(离子总数),MS / MS的最大离子注入时间,快速和正常扫描速率以及离子注入时间的预测。此外,我们还将提供来自最新一代LTQ-Orbitrap系统Orbitrap Elite的数据,以及推荐的MS和MS / MS参数。 Orbitrap Elite在扫描速度,灵敏度,动态范围和分辨能力方面均优于Orbitrap Classic,并具有更高的识别率。在LTQ-Orbitrap Classic和XLQ上确定的几个优化的MS参数可以轻松转移到Orbitrap Elite,而其他参数则需要重新评估。最后,简要讨论了Q Exactive和HCD,以及样品制备,LC优化和生物信息学分析。我们希望本教程将对蛋白质组学领域的新手提供指导,并帮助他们获得最佳结果。

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