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SCX 分级与电荷反转衍生化相结合促进 C 末端组学中非胰蛋白酶肽的鉴定。

Combination of SCX Fractionation and Charge-Reversal Derivatization Facilitates the Identification of Nontryptic Peptides in C-Terminomics.

机构信息

Systematic Proteome Research & Bioanalytics, Institute for Experimental Medicine , Christian-Albrechts-Universität zu Kiel , 24105 Kiel , Germany.

出版信息

J Proteome Res. 2019 Jul 5;18(7):2954-2964. doi: 10.1021/acs.jproteome.9b00264. Epub 2019 Jun 25.

Abstract

The proteome wide, mass spectrometry based identification of protein C-termini is hampered by factors such as poor ionization efficiencies, low yielding labeling strategies, or the need for enrichment procedures. We present a bottom-up proteomics workflow to identify protein C-termini utilizing a combination of strong cation exchange chromatography, on-solid phase charge-reversal derivatization and LC-MS/MS analysis. Charge-reversal improved both MS and MS/MS spectra quality of peptides carrying nonbasic C-terminal residues, allowing the identification of a high number of noncanonical C-termini not identified in nonderivatized samples. Further, we could show that C-terminal O labeling introduced during proteolytic processing of the samples is not suitable to distinguish internal from C-terminal peptides. The presented workflow enables the simultaneous identification of proteins by internal peptides and additionally provides data for the C- and N-terminome. Applying the developed workflow for the analysis of a Saccharomyces cerevisiae proteome allowed the identification of 734 protein C-termini in three independent biological replicates, and additional 789 candidate C-termini identified in two or one of three biological replicates, respectively. The developed analytical workflow allowed us to chart the nature of the yeast C-terminome in unprecedented depth and provides an alternative methodology to assess C-terminal proteolytic protein processing.

摘要

基于质谱的蛋白质 C 端的蛋白质组学鉴定受到多种因素的限制,例如电离效率低、标记策略产率低,或者需要富集步骤。我们提出了一种基于自上而下的蛋白质组学工作流程,利用强阳离子交换色谱、固相电荷反转衍生化和 LC-MS/MS 分析相结合的方法来鉴定蛋白质 C 端。电荷反转提高了带有非碱性 C 末端残基的肽的 MS 和 MS/MS 谱质量,允许鉴定大量未在未衍生化样品中鉴定的非典型 C 末端。此外,我们可以证明在样品的酶解过程中引入的 C 端 O 标记不适合区分内部肽和 C 端肽。所提出的工作流程能够同时通过内部肽鉴定蛋白质,并为 C 端和 N 端组学提供数据。将开发的工作流程应用于酿酒酵母蛋白质组的分析,在三个独立的生物学重复中鉴定了 734 个蛋白质 C 端,在两个或三个生物学重复中的两个或一个重复中分别鉴定了 789 个候选 C 端。所开发的分析工作流程使我们能够以前所未有的深度描绘酵母 C 端组学的性质,并提供了一种替代方法来评估 C 端蛋白水解蛋白加工。

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