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首页> 外文期刊>Analytical chemistry >Conformational Analysis of Large and Highly Disulfide-Stabilized Proteins by Integrating Online Electrochemical Reduction into an Optimized H/D Exchange Mass Spectrometry Workflow
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Conformational Analysis of Large and Highly Disulfide-Stabilized Proteins by Integrating Online Electrochemical Reduction into an Optimized H/D Exchange Mass Spectrometry Workflow

机译:通过将在线电化学还原集成到优化的H / D交换质谱工作流程中,对大型且高度二硫键稳定的蛋白质进行构象分析

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摘要

Analysis of disulfide-bonded proteins by hydrogen/deuterium exchange mass spectrometry (HDX-MS) requires effective and rapid reduction of disulfide bonds before enzymatic digestion in order to increase sequence coverage. In a conventional HDX-MS workflow, disulfide bonds are reduced chemically by addition of a reducing agent to the quench solution (e.g., tris(2-carboxyethyl)phosphine (TCEP)). The chemical reduction, however, is severely limited under quenched conditions due to a narrow time window as well as low pH and temperature. Here, we demonstrate the real-world applicability of integrating electrochemical reduction into an online HDX-MS workflow. We have optimized the electrochemical reduction efficiency during HDX-MS analysis of two particularly challenging disulfide stabilized proteins: wa therapeutic IgG(1)-antibody and nerve growth factor-beta (NGF). Several different parameters (flow rate and applied square wave potential, as well as the type of labeling and quench buffer) were investigated, and the optimized workflow increased the sequence coverage of NGF from 46% with chemical reduction to 99%, when electrochemical reduction was applied. Additionally, the optimized workflow also enabled a similar high sequence coverage of 96% and 87% for the heavy and light chain of the IgG(1)-antibody, respectively. The presented results demonstrate the successful electrochemical reduction during HDX-MS analysis of both a small exceptional tightly disulfide-bonded protein (NGF) as well as the largest protein attempted to date (IgG(1)-antibody). We envision that online electrochemical reduction is poised to decrease the complexity of sample handling and increase the versatility of the HDX-MS technique.
机译:通过氢/氘交换质谱(HDX-MS)分析二硫键结合的蛋白质需要在酶促消化之前有效且快速地还原二硫键,以增加序列覆盖率。在常规的HDX-MS工作流程中,通过向淬灭溶液中添加还原剂(例如,三(2-羧乙基)膦(TCEP))来化学还原二硫键。然而,由于时间窗口窄以及pH值和温度低,在淬火条件下化学还原受到严格限制。在这里,我们演示了将电化学还原集成到在线HDX-MS工作流程中的实际应用。我们在HDX-MS分析过程中优化了两个特别具有挑战性的二硫键稳定蛋白的电化学还原效率:wa治疗性IgG(1)-抗体和神经生长因子-beta(NGF)。研究了几个不同的参数(流速和施加的方波电势,以及标记和淬灭缓冲液的类型),当电化学还原为应用。此外,优化的工作流程还使IgG(1)抗体的重链和轻链分别具有96%和87%的相似高序列覆盖率。呈现的结果表明,在HDX-MS分析过程中,成功的电化学还原方法既有小的特殊的紧密二硫键结合蛋白(NGF),也有迄今为止尝试的最大蛋白(IgG(1)-抗体)。我们设想在线电化学还原有望降低样品处理的复杂性并增加HDX-MS技术的多功能性。

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