Department of Laboratory Medicine and Pathology, Mayo Clinic, Rochester, Minnesota, USA.
Proteomics Core, Mayo Clinic, Rochester, Minnesota, USA.
Proteomics. 2023 May;23(10):e2200507. doi: 10.1002/pmic.202200507. Epub 2023 Feb 19.
A quadrupole time-of-flight mass spectrometer coupled with a trapped ion mobility spectrometry (timsTOF) operated in parallel accumulation-serial fragmentation (PASEF) mode has recently emerged as a platform capable of providing four-dimensional (4D) features comprising of elution time, collision cross section (CCS), mass-to-charge ratio, and intensity of peptides. The PASEF mode provides ∼100% ion sampling efficiency both in data-dependent acquisition (DDA) and data-independent acquisition (DIA) modes without sacrificing sensitivity. In addition, targeted measurements using PASEF integrated parallel reaction monitoring (PRM) mode have also been described. However, only limited number of studies have used timsTOF for analysis of clinical samples. Although Orbitrap mass spectrometers have been used for biomarker discovery from cerebrospinal fluid (CSF) in a variety of neurological diseases, these Orbitrap-derived datasets cannot readily be applied for driving experiments on timsTOF mass spectrometers. We generated a catalog of peptides and proteins in human CSF in DDA mode on a timsTOF mass spectrometer and used these data to build a spectral library. This strategy allowed us to use elution times and ion mobility values from the spectral library to design PRM experiments for quantifying previously discovered biomarkers from CSF samples in Alzheimer's disease. When the same samples were analyzed using a DIA approach combined with a spectral library search, a higher number of proteins were identified than in a library-free approach. Overall, we have established a spectral library of CSF as a resource and demonstrated its utility for PRM and DIA studies, which should facilitate studies of neurological disorders.
一种四极杆飞行时间质谱仪与离子淌度谱(timsTOF)联用,以平行累积-串联碎裂(PASEF)模式运行,最近已成为一种能够提供包含洗脱时间、碰撞截面(CCS)、质荷比和肽强度的四维(4D)特征的平台。PASEF 模式在数据依赖采集(DDA)和数据非依赖采集(DIA)模式下提供了约 100%的离子采样效率,而不会牺牲灵敏度。此外,还描述了使用 PASEF 集成平行反应监测(PRM)模式进行靶向测量。然而,只有有限数量的研究使用 timsTOF 来分析临床样本。虽然 Orbitrap 质谱仪已用于各种神经疾病的脑脊液(CSF)中的生物标志物发现,但这些基于 Orbitrap 的数据集不能直接应用于 timsTOF 质谱仪的驱动实验。我们在 timsTOF 质谱仪上以 DDA 模式生成了人类 CSF 中的肽和蛋白质目录,并使用这些数据构建了一个光谱库。该策略使我们能够使用来自光谱库的洗脱时间和离子淌度值来设计 PRM 实验,以定量阿尔茨海默病 CSF 样本中先前发现的生物标志物。当使用结合光谱库搜索的 DIA 方法分析相同的样本时,与无库方法相比,鉴定出的蛋白质数量更多。总体而言,我们已经建立了 CSF 的光谱库作为资源,并证明了其在 PRM 和 DIA 研究中的实用性,这应该有助于神经疾病的研究。