Department of Biological Chemistry Department, David Geffen School of Medicine, UCLA, Los Angeles, CA 90095, USA.
Department of Chemistry and Biochemistry, UCLA, Los Angeles, CA 90095, USA.
Chembiochem. 2021 May 14;22(10):1841-1851. doi: 10.1002/cbic.202000870. Epub 2021 Feb 18.
Chemoproteomics has enabled the rapid and proteome-wide discovery of functional, redox-sensitive, and ligandable cysteine residues. Despite widespread adoption and considerable advances in both sample-preparation workflows and MS instrumentation, chemoproteomics experiments still typically only identify a small fraction of all cysteines encoded by the human genome. Here, we develop an optimized sample-preparation workflow that combines enhanced peptide labeling with single-pot, solid-phase-enhanced sample-preparation (SP3) to improve the recovery of biotinylated peptides, even from small sample sizes. By combining this improved workflow with on-line high-field asymmetric waveform ion mobility spectrometry (FAIMS) separation of labeled peptides, we achieve unprecedented coverage of >14000 unique cysteines in a single-shot 70 min experiment. Showcasing the wide utility of the SP3-FAIMS chemoproteomic method, we find that it is also compatible with competitive small-molecule screening by isotopic tandem orthogonal proteolysis-activity-based protein profiling (isoTOP-ABPP). In aggregate, our analysis of 18 samples from seven cell lines identified 34225 unique cysteines using only ∼28 h of instrument time. The comprehensive spectral library and improved coverage provided by the SP3-FAIMS chemoproteomics method will provide the technical foundation for future studies aimed at deciphering the functions and druggability of the human cysteineome.
化学生物学蛋白质组学使快速和蛋白质组范围内发现功能、氧化还原敏感和配体可结合的半胱氨酸残基成为可能。尽管在样品制备工作流程和 MS 仪器方面得到了广泛采用和相当大的进展,但化学生物学蛋白质组学实验通常仅能鉴定人类基因组编码的所有半胱氨酸的一小部分。在这里,我们开发了一种优化的样品制备工作流程,该流程将增强的肽标记与单锅固相增强样品制备 (SP3) 相结合,以提高生物素化肽的回收率,即使是从小样本量中也能提高回收率。通过将这种改进的工作流程与在线高场非对称波形离子迁移谱 (FAIMS) 分离标记的肽相结合,我们在单次 70 分钟的实验中实现了前所未有的 >14000 个独特半胱氨酸的覆盖率。展示了 SP3-FAIMS 化学生物学蛋白质组学方法的广泛适用性,我们发现它也与同位素串联正交蛋白酶解-基于活性的蛋白质谱 (isoTOP-ABPP) 的竞争性小分子筛选兼容。总的来说,我们对来自七个细胞系的 18 个样本的分析仅使用了约 28 小时的仪器时间就鉴定了 34225 个独特的半胱氨酸。SP3-FAIMS 化学生物学蛋白质组学方法提供的综合光谱库和提高的覆盖率将为未来旨在破译人类半胱氨酸组功能和可成药性的研究提供技术基础。