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多酶消化策略可提高标签和无标准绝对定量的准确性和灵敏度,达到使用稳定同位素标记标准添加法可实现的水平。

Multiple-Enzyme-Digestion Strategy Improves Accuracy and Sensitivity of Label- and Standard-Free Absolute Quantification to a Level That Is Achievable by Analysis with Stable Isotope-Labeled Standard Spiking.

机构信息

Biochemical Proteomics Group, Department of Proteomics and Signal Transduction , Max-Planck-Institute of Biochemistry , Am Klopferspitz 18 , D-82152 Martinsried , Germany.

Department of Pharmacy , Uppsala University , S-751 23 Uppsala , Sweden.

出版信息

J Proteome Res. 2019 Jan 4;18(1):217-224. doi: 10.1021/acs.jproteome.8b00549. Epub 2018 Oct 30.

DOI:10.1021/acs.jproteome.8b00549
PMID:30336047
Abstract

Quantification of individual proteins is an essential task in understanding biological processes. For example, determination of concentrations of proteins transporting and metabolizing xenobiotics is a prerequisite for drug disposition predictions in humans based on in vitro data. So far, this task has frequently been accomplished by targeted proteomics. This type of analyses requires preparation of stable isotope labeled standards for each protein of interest. The selection of appropriate standard peptides is usually tedious and the number of proteins that can be studied in a single experiment by these approaches is limited. In addition, incomplete digestion of proteins often affects the accuracy of the quantification. To circumvent these constrains in proteomic protein quantification, label- and standard-free approaches, such as "total protein approach" (TPA) have been proposed. Here we directly compare an approach using stable isotope labeled (SIL) standards and TPA for quantification of transporters and enzymes in human liver samples within the same LC-MS/MS runs. We show that TPA is a convenient alternative to SIL-based methods. Optimization of the sample preparation beyond commonly used single tryptic digestion, by adding consecutive cleavage steps, improves accuracy and reproducibility of the TPA method to a level, which is achievable by analysis using stable isotope-labeled standard spiking.

摘要

定量单个蛋白质是理解生物过程的基本任务。例如,确定运输和代谢外源物质的蛋白质的浓度是基于体外数据预测人类药物处置的前提。到目前为止,这项任务经常通过靶向蛋白质组学来完成。这种分析需要为每个感兴趣的蛋白质制备稳定同位素标记的标准品。合适的标准肽的选择通常很繁琐,并且这些方法在单个实验中可以研究的蛋白质数量有限。此外,蛋白质的不完全消化经常会影响定量的准确性。为了避免蛋白质组学蛋白质定量中的这些限制,可以采用无标记和标准的方法,例如“总蛋白法”(TPA)。在这里,我们在相同的 LC-MS/MS 运行中直接比较了使用稳定同位素标记(SIL)标准品和 TPA 定量人肝样品中转运蛋白和酶的方法。我们表明,TPA 是 SIL 方法的一种方便的替代方法。通过添加连续的切割步骤,对样品制备进行优化,超过了常用的单一胰蛋白酶消化,将 TPA 方法的准确性和重现性提高到了使用稳定同位素标记标准品加标分析可以达到的水平。

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