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在临床实验室蛋白质质谱分析方法的开发中,操控胰蛋白酶消化条件以加速蛋白水解并简化消化工作流程。

Manipulating trypsin digestion conditions to accelerate proteolysis and simplify digestion workflows in development of protein mass spectrometric assays for the clinical laboratory.

作者信息

Zheng Yu Zi, DeMarco Mari L

机构信息

Department of Pathology and Laboratory Medicine, University of British Columbia, Vancouver, Canada.

Department of Pathology and Laboratory Medicine, St. Paul's Hospital, Providence Health Care, Vancouver, Canada.

出版信息

Clin Mass Spectrom. 2017 Oct 18;6:1-12. doi: 10.1016/j.clinms.2017.10.001. eCollection 2017 Dec.

Abstract

For ease of measurement and accurate identification of proteins by mass spectrometry, protein targets are commonly cleaved into peptides. Protein digestion is a critical step in sample preparation, yielding peptides amenable to both chromatographic separation and mass spectrometric analysis. Trypsin is the most extensively used protease due to its high cleavage specificity; however, it can yield highly variable digestion profiles and is dependent on several factors including digestion buffer, denaturant, trypsin quality selected, and composition/complexity of the sample matrix. Historically, trypsin digestion protocols have relied on lengthy digestion times-which are unsuitable for many clinical applications-to ensure effective proteolysis. Here, we performed an iterative and comprehensive evaluation of digestion conditions for five structurally diverse proteins in plasma and serum: apolipoprotein A-1, retinol-binding protein 4, transthyretin, complement component 9 and C-reactive protein. Conditions were monitored for improvements in signal intensity, reproducibility of digestion profile, and rate of release of proteolytic peptides. This approach yielded an optimized digestion protocol for detection of all five proteins in a single workflow requiring a brief 20 min digestion, without the use of chemical denaturants or reduction/alkylation steps, and only 1 μl of plasma. It is our hope that this data can accelerate the development phase of targeted mass spectrometric protein assays by identifying practical approaches to accelerate and simplify digestion protocols for clinical applications and assist with the selection of tryptic peptides for protein quantitation.

摘要

为便于通过质谱法测量和准确鉴定蛋白质,通常将蛋白质靶标切割成肽段。蛋白质消化是样品制备中的关键步骤,可产生适用于色谱分离和质谱分析的肽段。由于其高切割特异性,胰蛋白酶是使用最广泛的蛋白酶;然而,它可能产生高度可变的消化图谱,并且取决于几个因素,包括消化缓冲液、变性剂、所选胰蛋白酶的质量以及样品基质的组成/复杂性。从历史上看,胰蛋白酶消化方案依赖于较长的消化时间(这不适用于许多临床应用)来确保有效的蛋白水解。在这里,我们对血浆和血清中五种结构不同的蛋白质:载脂蛋白A-1、视黄醇结合蛋白4、转甲状腺素蛋白、补体成分9和C反应蛋白的消化条件进行了迭代和全面的评估。监测条件以改善信号强度、消化图谱的重现性以及蛋白水解肽的释放速率。这种方法产生了一种优化的消化方案,可在单个工作流程中检测所有五种蛋白质,只需短暂的20分钟消化,无需使用化学变性剂或还原/烷基化步骤,仅需1微升血浆。我们希望这些数据能够通过确定加速和简化临床应用消化方案的实用方法,并协助选择用于蛋白质定量的胰蛋白酶肽段,来加速靶向质谱蛋白质分析的开发阶段。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/62fa/11322774/4779b2b99e67/ga1.jpg

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