Department of Chemistry, University of Wisconsin-Madison, Madison, WI, 53706.
Department of Cell and Regenerative Biology, University of Wisconsin-Madison, Madison, WI, 53706.
Mass Spectrom Rev. 2022 Mar;41(2):158-177. doi: 10.1002/mas.21653. Epub 2020 Sep 7.
Proteoforms contribute functional diversity to the proteome and aberrant proteoforms levels have been implicated in biological dysfunction and disease. Fourier-transform ion cyclotron resonance mass spectrometry (FT-ICR MS), with its ultrahigh mass-resolving power, mass accuracy, and versatile tandem MS capabilities, has empowered top-down, middle-down, and native MS-based approaches for characterizing proteoforms and their complexes in biological systems. Herein, we review the features which make FT-ICR MS uniquely suited for measuring proteoform mass with ultrahigh resolution and mass accuracy; obtaining in-depth proteoform sequence coverage with expansive tandem MS capabilities; and unambiguously identifying and localizing post-translational and noncovalent modifications. We highlight examples from our body of work in which we have quantified and comprehensively characterized proteoforms from cardiac and skeletal muscle to better understand conditions such as chronic heart failure, acute myocardial infarction, and sarcopenia. Structural characterization of monoclonal antibodies and their proteoforms by FT-ICR MS and emerging applications, such as native top-down FT-ICR MS and high-throughput top-down FT-ICR MS-based proteomics at 21 T, are also covered. Historically, the information gleaned from FT-ICR MS analyses have helped provide biological insights. We predict FT-ICR MS will continue to enable the study of proteoforms of increasing size from increasingly complex endogenous mixtures and facilitate the benchmarking of sensitive and specific assays for clinical diagnostics. © 2020 John Wiley & Sons Ltd. Mass Spec Rev.
蛋白质形式为蛋白质组赋予了功能多样性,而异常蛋白质形式的水平与生物功能障碍和疾病有关。傅里叶变换离子回旋共振质谱(FT-ICR MS)具有超高的质量分辨率、质量精度和多功能串联质谱能力,为在生物系统中对蛋白质形式及其复合物进行表征提供了自上而下、自下而上和基于天然 MS 的方法。在此,我们回顾了使 FT-ICR MS 非常适合测量具有超高分辨率和质量精度的蛋白质形式质量的特点;通过广泛的串联质谱能力获得深入的蛋白质形式序列覆盖;并明确识别和定位翻译后和非共价修饰。我们强调了我们从心脏和骨骼肌中定量和全面表征蛋白质形式的工作中获得的示例,以更好地了解慢性心力衰竭、急性心肌梗死和肌肉减少症等情况。FT-ICR MS 对单克隆抗体及其蛋白质形式的结构表征以及新兴应用(例如天然自上而下 FT-ICR MS 和 21 T 下基于高通量自上而下 FT-ICR MS 的蛋白质组学)也进行了介绍。从历史上看,从 FT-ICR MS 分析中获得的信息有助于提供生物学见解。我们预测,FT-ICR MS 将继续能够研究越来越复杂的内源性混合物中越来越大的蛋白质形式,并促进用于临床诊断的敏感和特异性检测的基准测试。© 2020 约翰威立父子公司。质谱评论。