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通过在线实施光化学还原与液相色谱-质谱联用技术对复杂二硫键进行作图。

Mapping Complex Disulfide Bonds via Implementing Photochemical Reduction Online with Liquid Chromatography-Mass Spectrometry.

机构信息

MOE Key Laboratory of Bioorganic Phosphorus Chemistry & Chemical Biology, Department of Chemistry, Tsinghua University, Beijing 100084, China.

出版信息

J Am Soc Mass Spectrom. 2021 Jan 6;32(1):307-314. doi: 10.1021/jasms.0c00324. Epub 2020 Nov 2.

Abstract

Assigning disulfide linkage is a crucial task for protein identification. The current bottom-up proteomics workflow has limitations in characterizing peptide digests containing multiple disulfide bonds due to the difficulty of controlling partial reduction via conventional chemical reduction methods. Previously, our lab reported the development of an acetone/2-propanol (IPA) photoinitiating system for rapid (on second time scale) and tunable disulfide bond reduction. Herein, we incorporated this reaction system onto a liquid chromatography-mass spectrometry (LC-MS) system for bottom-up protein analysis applications. The photochemical reduction reaction was implemented in a flow microreactor which allowed for up to 15 s 254 nm UV irradiation. The microreactor was installed post LC separation and right before electrospray ionization, while a T-junction was used to introduce the photoinitiating solution to the LC eluent before entering the microreactor. The degree of disulfide reduction was tunable from partial reduction to complete reduction for peptides containing one or multiple disulfide bonds. Significantly improved sequence coverage was obtained from complete disulfide reduction, while assignment of the disulfide connectivity was facilitated from partial disulfide reduction when coupled with tandem mass spectrometry via collision-induced dissociation. As a proof-of-concept test, trypsin digests of lysozyme (four disulfide bonds) and bovine serum albumin (BSA, 17 disulfide bonds) were analyzed by the LC-MS system coupled with online reduction. Sequence coverage was improved from 35% to 100% and 13% to 87% for lysozyme and BSA, respectively. All four disulfide bonds of lysozyme were determined. For BSA, nine disulfide bonds were characterized and eight adjacent disulfide bonds were narrowed down.

摘要

确定二硫键连接是蛋白质鉴定的关键任务。由于传统化学还原方法难以控制部分还原,当前的自上而下的蛋白质组学工作流程在表征含有多个二硫键的肽消化物方面存在局限性。此前,我们实验室报道了开发一种丙酮/2-丙醇(IPA)光引发系统,用于快速(在第二时间尺度上)和可调谐的二硫键还原。在此,我们将该反应系统整合到液相色谱-质谱(LC-MS)系统中,用于自上而下的蛋白质分析应用。光化学还原反应在流动微反应器中进行,允许进行长达 15 秒的 254nmUV 照射。微反应器安装在 LC 分离之后和电喷雾电离之前,而 T 型接头用于在进入微反应器之前将光引发溶液引入 LC 洗脱液中。对于含有一个或多个二硫键的肽,二硫键的还原程度可以从部分还原到完全还原进行调节。完全还原可获得显著提高的序列覆盖度,而部分还原结合串联质谱通过碰撞诱导解离则有助于确定二硫键连接。作为概念验证测试,通过 LC-MS 系统与在线还原联用,分析溶菌酶(四个二硫键)和牛血清白蛋白(BSA,17 个二硫键)的胰蛋白酶消化物。溶菌酶和 BSA 的序列覆盖率分别从 35%提高到 100%和从 13%提高到 87%。确定了溶菌酶的所有四个二硫键。对于 BSA,表征了九个二硫键,并将八个相邻的二硫键缩小到范围。

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