Integrative Omics, Biological Sciences Division, Pacific Northwest National Laboratory.
Bioproducts Sciences and Engineering Laboratory, Department of Biological Systems Engineering, Washington State University.
J Vis Exp. 2021 Jun 21(172). doi: 10.3791/62671.
Reversible oxidative modifications on protein thiols have recently emerged as important mediators of cellular function. Herein we describe the detailed procedure of a quantitative redox proteomics method that utilizes resin-assisted capture (RAC) in combination with tandem mass tag (TMT) isobaric labeling and liquid chromatography-tandem mass spectrometry (LC-MS/MS) to allow multiplexed stochiometric quantification of oxidized protein thiols at the proteome level. The site-specific quantitative information on oxidized cysteine residues provides additional insight into the functional impacts of such modifications. The workflow is adaptable across many sample types, including cultured cells (e.g., mammalian, prokaryotic) and whole tissues (e.g., heart, lung, muscle), which are initially lysed/homogenized and with free thiols being alkylated to prevent artificial oxidation. The oxidized protein thiols are then reduced and captured by a thiol-affinity resin, which streamlines and simplifies the workflow steps by allowing the proceeding digestion, labeling, and washing procedures to be performed without additional transfer of proteins/peptides. Finally, the labeled peptides are eluted and analyzed by LC-MS/MS to reveal comprehensive stoichiometric changes related to thiol oxidation across the entire proteome. This method greatly improves the understanding of the role of redox-dependent regulation under physiological and pathophysiological states related to protein thiol oxidation.
近年来,蛋白质巯基的氧化还原修饰已成为细胞功能的重要调节因子。本文详细介绍了一种定量氧化还原蛋白质组学方法,该方法结合树脂辅助捕获(RAC)与串联质量标签(TMT)同重同位素标记和液相色谱-串联质谱(LC-MS/MS)联用,可实现蛋白质巯基氧化的多指标、化学计量比定量。巯基特异性定量信息为这些修饰的功能影响提供了更多的见解。该工作流程适用于多种类型的样本,包括培养细胞(如哺乳动物、原核生物)和组织(如心脏、肺、肌肉),这些样本最初经裂解/匀浆处理,巯基被烷基化以防止人为氧化。然后,氧化的蛋白质巯基被巯基亲和树脂还原并捕获,该步骤简化了工作流程,使后续的消化、标记和洗涤步骤无需转移蛋白质/肽即可进行。最后,用 LC-MS/MS 洗脱并分析标记的肽,以揭示整个蛋白质组中与巯基氧化相关的全面化学计量变化。该方法极大地提高了我们对与蛋白质巯基氧化相关的生理和病理生理状态下氧化还原依赖性调节作用的理解。