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Quantifying the stabilizing effects of protein-ligand interactions in the gas phase

机译:定量气相中蛋白质-配体相互作用的稳定作用

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The effects of protein-ligand interactions on protein stability are typically monitored by a number of established solution-phase assays. Few translate readily to membrane proteins. We have developed an ion-mobility mass spectrometry approach, which discerns ligand binding to both soluble and membrane proteins directly via both changes in mass and ion mobility, and assesses the effects of these interactions on protein stability through measuring resistance to unfolding. Protein unfolding is induced through collisional activation, which causes changes in protein structure and consequently gas-phase mobility. This enables detailed characterization of the ligand-binding effects on the protein with unprecedented sensitivity. Here we describe the method and software required to extract from ion mobility data the parameters that enable a quantitative analysis of individual binding events. This methodology holds great promise for investigating biologically significant interactions between membrane proteins and both drugs and lipids that are recalcitrant to characterization by other means.
机译:蛋白质-配体相互作用对蛋白质稳定性的影响通常通过许多已建立的溶液相测定法进行监测。很少能轻易翻译成膜蛋白。我们开发了一种离子迁移质谱方法,该方法可通过质量和离子迁移率的变化直接识别配体与可溶性和膜蛋白的结合,并通过测量抗折叠性来评估这些相互作用对蛋白质稳定性的影响。蛋白质的展开是通过碰撞激活引起的,该碰撞激活引起蛋白质结构的变化,进而导致气相迁移。这样就可以以前所未有的灵敏度详细表征对蛋白质的配体结合作用。在这里,我们描述了从离子淌度数据中提取能够对单个结合事件进行定量分析的参数所需的方法和软件。该方法学对于研究膜蛋白与药物和脂质之间的生物学上显着的相互作用具有广阔的前景,而这些相互作用对通过其他方法难以表征。

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