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Approach to Characterization of the Higher Order Structure of Disulfide-Containing Proteins Using Hydrogen/Deuterium Exchange and Top-Down Mass Spectrometry

机译:氢/氘交换和自上而下质谱法表征含二硫键蛋白质的高阶结构的方法

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Top-down hydrogen/deuterium exchange (HDX) with mass spectrometric (MS) detection has recently matured to become a potent biophysical tool capable of providing valuable information on higher order structure and conformational dynamics of proteins at an unprecedented level of structural detail. However, the scope of the proteins amenable to the analysis by top-down HDX MS still remains limited, with the protein size and the presence of disulfide bonds being the two most important limiting factors. While the limitations imposed by the physical size of the proteins gradually become more relaxed as the sensitivity, resolution and dynamic range of modern MS instrumentation continue to improve at an ever accelerating pace, the presence of the disulfide linkages remains a much less forgiving limitation even for the proteins of relatively modest size. To circumvent this problem, we introduce an online chemical reduction step following completion and quenching of the HDX reactions and prior to the top-down MS measurements of deuterium occupancy of individual backbone amides. Application of the new methodology to the top-down HDX MS characterization of a small (99 residue long) disulfide-containing protein β_2-microglobulin allowed the backbone amide protection to be probed with nearly a single-residue resolution across the entire sequence. The high-resolution backbone protection pattern deduced from the top-down HDX MS measurements carried out under native conditions is in excellent agreement with the crystal structure of the protein and high-resolution NMR data, suggesting that introduction of the chemical reduction step to the top-down routine does not trigger hydrogen scrambling either during the electrospray ionization process or in the gas phase prior to the protein ion dissociation.
机译:具有质谱(MS)检测功能的自上而下的氢/氘交换(HDX)最近已经成熟,成为一种强大的生物物理工具,能够以前所未有的结构细节提供有关蛋白质的高级结构和构象动力学的有价值的信息。但是,适用于自上而下的HDX MS分析的蛋白质的范围仍然有限,蛋白质的大小和二硫键的存在是两个最重要的限制因素。随着现代MS仪器灵敏度,分辨率和动态范围的不断提高,蛋白质物理尺寸所施加的限制逐渐放宽,但二硫键的存在仍然要宽容得多,即使对于大小相对适中的蛋白质。为了解决这个问题,我们在完成HDX反应并淬灭之后,以及在从上至下的MS测量各个骨架酰胺的氘占有率之前,引入了在线化学还原步骤。将新方法应用于从小到大(长99个残基)二硫键的蛋白质β_2-微球蛋白的自上而下的HDX MS表征,可以在整个序列中以几乎单残基的分辨率探查骨架酰胺保护。从在自然条件下进行的自顶向下的HDX MS测量得出的高分辨率主链保护模式与蛋白质的晶体结构和高分辨率NMR数据极为吻合,这表明将化学还原步骤引入了顶部降级程序在电喷雾电离过程中或在蛋白质离子离解之前的气相中均不会触发氢加扰。

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