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通过源内还原和数据依赖的质谱法对紧密间隔半胱氨酸进行复杂二硫键模式的完整映射。

Complete Mapping of Complex Disulfide Patterns with Closely-Spaced Cysteines by In-Source Reduction and Data-Dependent Mass Spectrometry.

机构信息

Protein Engineering, Global Research, Novo Nordisk A/S , Novo Nordisk Park, 2760 Måløv, Denmark.

Proteomics Program, The Novo Nordisk Foundation Center for Protein Research, Faculty of Health and Medical Sciences, University of Copenhagen , 2200 Copenhagen, Denmark.

出版信息

Anal Chem. 2017 Jun 6;89(11):5949-5957. doi: 10.1021/acs.analchem.7b00424. Epub 2017 May 9.

Abstract

Mapping of disulfide bonds is an essential part of protein characterization to ensure correct cysteine pairings. For this, mass spectrometry (MS) is the most widely used technique due to fast and accurate characterization. However, MS-based disulfide mapping is challenged when multiple disulfide bonds are present in complicated patterns. This includes the presence of disulfide bonds in nested patterns and closely spaced cysteines. Unambiguous mapping of such disulfide bonds typically requires advanced MS approaches. In this study, we exploited in-source reduction (ISR) of disulfide bonds during the electrospray ionization process to facilitate disulfide bond assignments. We successfully developed a LC-ISR-MS/MS methodology to use as an online and fully automated partial reduction procedure. Postcolumn partial reduction by ISR provided fast and easy identification of peptides involved in disulfide bonding from nonreduced proteolytic digests, due to the concurrent detection of disulfide-containing peptide species and their composing free peptides. Most importantly, intermediate partially reduced species containing only a single disulfide bond were also generated, from which unambiguous assignment of individual disulfide bonds could be done in species containing closely spaced disulfide bonds. The strength of this methodology was demonstrated by complete mapping of all four disulfide bonds in lysozyme and all 17 disulfide bonds in human serum albumin, including nested disulfide bonds and motifs of adjacent cysteine residues.

摘要

二硫键的定位是蛋白质特性分析的重要组成部分,以确保半胱氨酸正确配对。为此,由于快速、准确的特点,质谱(MS)是最广泛使用的技术。然而,当存在复杂模式的多个二硫键时,基于 MS 的二硫键定位会受到挑战。这包括嵌套模式和紧密间隔的半胱氨酸中存在二硫键。此类二硫键的明确定位通常需要先进的 MS 方法。在这项研究中,我们利用电喷雾电离过程中的源内还原(ISR)来促进二硫键的分配。我们成功开发了一种 LC-ISR-MS/MS 方法,用作在线和全自动部分还原程序。由于同时检测到含二硫键的肽类及其组成的游离肽类,因此通过 ISR 进行柱后部分还原为从非还原蛋白水解物中快速、轻松地鉴定参与二硫键形成的肽类提供了便利。最重要的是,还生成了仅含有单个二硫键的中间部分还原物种,从中可以对含有紧密间隔二硫键的物种中的各个二硫键进行明确的分配。该方法的有效性通过对溶菌酶中所有四个二硫键和人血清白蛋白中所有 17 个二硫键(包括嵌套二硫键和相邻半胱氨酸残基的模体)的完全定位得到了证明。

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