用交联质谱法比较溶液和气相中部分变性细胞色素c结构系。

IF 3.1 2区 化学 Q2 BIOCHEMICAL RESEARCH METHODS Journal of the American Society for Mass Spectrometry Pub Date : 2025-01-01 Epub Date: 2024-12-12 DOI:10.1021/jasms.4c00388
Rebecca L Cain, Ian K Webb
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引用次数: 0

摘要

电喷雾电离质谱(ESI-MS)可以保留完整的蛋白质结构,但在引入气相期间和之后,部分折叠和未折叠蛋白质结构的细节是难以捉摸的。在这里,我们使用ESI-MS和化学交联剂来比较溶液相和气相中变性细胞色素c的结构。ESI之前的溶液相交联捕获了溶液相结构,而在捕集池中通过离子/离子反应的气相交联捕获了气相结构。对比两种条件下交联产物的ECD碎片,发现交联剂的识别非常相似,这表明溶液和气体结构之间没有明显的结构差异。利用已确定的交联位点作为远端约束对变性蛋白进行分子建模,可以对变性结构进行可视化,以确定展开的开始位置。我们的数据表明,细胞色素c可能由于内部疏水膨胀而开始展开,随后是α螺旋展开。这种结构变化的定位比单独使用CCS测量更具体。
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Comparison of Partially Denatured Cytochrome c Structural Ensembles in Solution and Gas Phases Using Cross-Linking Mass Spectrometry.

Electrospray ionization mass spectrometry (ESI-MS) can retain intact protein structures, but details about partially folded and unfolded protein structures during and after introduction to the gas phase are elusive. Here we use ESI-MS with chemical cross-linkers to compare denatured cytochrome c structures in both solution and gas phases. Solution phase cross-linking prior to ESI captures solution phase structures, while gas phase cross-linking through ion/ion reactions in the trap cell captures gas phase structures. Comparing the ECD fragmentation of the cross-linked products under both conditions shows very similar cross-linker identifications, alluding to no major structural dissimilarities between solution and gas structures. Molecular modeling of the denatured protein using the identified cross-linked sites as distant restraints allows for visualization of the denatured structures to pinpoint where unfolding begins. Our data suggest that cytochrome c likely begins to unfold due to interior hydrophobic expansion, followed by α helical unfolding. This localization of structural changes is more specific than using CCS measurements alone.

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来源期刊
CiteScore
5.50
自引率
9.40%
发文量
257
审稿时长
1 months
期刊介绍: The Journal of the American Society for Mass Spectrometry presents research papers covering all aspects of mass spectrometry, incorporating coverage of fields of scientific inquiry in which mass spectrometry can play a role. Comprehensive in scope, the journal publishes papers on both fundamentals and applications of mass spectrometry. Fundamental subjects include instrumentation principles, design, and demonstration, structures and chemical properties of gas-phase ions, studies of thermodynamic properties, ion spectroscopy, chemical kinetics, mechanisms of ionization, theories of ion fragmentation, cluster ions, and potential energy surfaces. In addition to full papers, the journal offers Communications, Application Notes, and Accounts and Perspectives
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