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首页> 外文期刊>Journal of the American Society for Mass Spectrometry >Differential Mobility Spectrometry-Hydrogen Deuterium Exchange (DMS-HDX) as a Probe of Protein Conformation in Solution
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Differential Mobility Spectrometry-Hydrogen Deuterium Exchange (DMS-HDX) as a Probe of Protein Conformation in Solution

机译:差分迁移谱法-氢氘交换(DMS-HDX)作为溶液中蛋白质构型的探针

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摘要

Differential mobility spectrometry (DMS) is an ion mobility technique that has been adopted chiefly as a pre-filter for small- to medium-sized analytes (< 1 000 Da). With the exception of a handful of studies that employ an analogue of DMS-field asymmetric waveform ion mobility spectroscopy (FAIMS)-the application of DMS to intact biomacromolecules remains largely unexplored. In this work, we employ DMS combined with gas-phase hydrogen deuterium exchange (DMS-HDX) to probe the gas-phase conformations generated from proteins that were initially folded, partially-folded, and unfolded in solution. Our findings indicate that proteins with distinct structural features in solution exhibit unique deuterium uptake profiles as function of their optimal transmission through the DMS. Ultimately we propose that DMS-HDX can, if properly implemented, provide rapid measurements of liquid-phase protein structural stability that could be of use in biopharmaceuticals development.
机译:差分迁移谱(DMS)是一种离子迁移技术,主要用作中小型分析物(<1000 Da)的预过滤器。除了使用DMS场非对称波形离子迁移谱(FAIMS)的类似物的少数研究外,将DMS应用于完整的生物大分子的应用仍未开发。在这项工作中,我们将DMS与气相氢氘交换(DMS-HDX)结合使用,以探测由最初折叠,部分折叠和在溶液中展开的蛋白质产生的气相构象。我们的发现表明,溶液中具有独特结构特征的蛋白质表现出独特的氘吸收特性,这是它们通过DMS最佳传递的函数。最终,我们提出,如果正确实施DMS-HDX,则可以提供可用于生物药物开发的液相蛋白结构稳定性的快速测量方法。

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