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Development of an electrochemical oxidation method for probing higher order protein structure with mass spectrometry

机译:质谱法探测高阶蛋白质结构的电化学氧化方法的发展

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We report here the novel use of electrochemistry to generate covalent oxidative labels on intact proteins in both non-native and physiologically relevant solutions as a surface mapping probe of higher order protein structure. Two different working electrode types were tested across a range of experimental parameters including voltage, flow rate, and solution electrolyte composition to affect the extent of oxidation on intact proteins, as measured both on-line and off-line with mass spectrometry. Oxidized proteins were collected off-line for proteolytic digestion followed by LC-MS/MS analysis. Peptide MS/MS data were searched with the InsPecT scoring algorithm for 46 oxidative mass shifts previously reported in the literature. Preliminary data showed reasonable agreement between amino acid solvent accessibility and the resulting oxidation status of these residues in aqueous buffer, while more buried residues were found to be oxidized in non-native solution. Our results indicate that electrochemical oxidation using a boron-doped diamond electrode has the potential to become a useful and easily accessible tool for conducting oxidative surface mapping experiments.
机译:我们在这里报告了电化学的新用途,以在非天然和生理相关溶液中完整蛋白质上产生共价氧化标记,作为高阶蛋白质结构的表面作图探针。两种不同的工作电极类型在一系列实验参数上进行了测试,包括电压,流速和溶液电解质成分,以影响完整蛋白质的氧化程度,这是通过质谱在线和离线测量的。离线收集氧化的蛋白质以进行蛋白水解消化,然后进行LC-MS / MS分析。使用InsPecT评分算法搜索多肽MS / MS数据,以获取先前文献中报道的46种氧化质量转移。初步数据显示氨基酸溶剂可及性与这些残留物在水性缓冲液中的氧化态之间存在合理的一致性,而发现更多的掩埋残留物在非天然溶液中被氧化。我们的结果表明,使用掺硼金刚石电极进行电化学氧化有可能成为进行氧化表面作图实验的有用且容易获得的工具。

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