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首页> 外文期刊>Chemistry & biology >Gas-Phase Unfolding and Disassembly Reveals Stability Differences in Ligand-Bound Multiprotein Complexes
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Gas-Phase Unfolding and Disassembly Reveals Stability Differences in Ligand-Bound Multiprotein Complexes

机译:气相展开和拆卸揭示了配体结合的多蛋白复合物中的稳定性差异。

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摘要

Mass spectrometry (MS) is widely used to assess the binding of small molecules to proteins and their complexes. In many cases, subtle differences in the stability afforded by binding of ligands to protein assemblies cannot be detected by MS. Here we show that monitoring the unfolding of protein subunits, using ion mobility-MS, allows differentiation of the effects of ligand binding not normally observed by MS alone. Using wild-type and disease-associated variants of tetrameric transthyretin, MS data indicate that populations of the variant protein are less stable than wild-type. Ion mobility-MS, however, is able to show that the natural ligand of transthyretin, thyroxine, provides a larger stability increase to the tetramer composed of variant subunits than to the wild-type protein-ligand complex. Overall, therefore, our results have implications for small-molecule drug design directed at multiprotein targets.
机译:质谱(MS)被广泛用于评估小分子与蛋白质及其复合物的结合。在许多情况下,MS无法检测到配体与蛋白质装配体结合所提供的稳定性上的细微差异。在这里,我们表明,使用离子迁移率质谱仪监测蛋白质亚基的展开,可以区分通常单独使用质谱仪无法观察到的配体结合作用。使用四聚运甲状腺素蛋白的野生型和疾病相关变体,MS数据表明,该变体蛋白种群的稳定性低于野生型。然而,离子淌度-MS能够证明运甲状腺素蛋白的天然配体甲状腺素对由变异亚基组成的四聚体的稳定性提高幅度要大于对野生型蛋白质-配体复合物的稳定性。因此,总的来说,我们的结果对针对多蛋白靶标的小分子药物设计有影响。

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