Anal Chem. 2018 Jul 3;90(13):7997-8001. doi: 10.1021/acs.analchem.8b00859. Epub 2018 Jun 22.
Sequential unfolding of monomeric proteins is important for the global understanding of local conformational elements (e.g., secondary structures and domain connections) within those protein assemblies. Ion mobility-mass spectrometry (IM-MS) is an emerging and promising technique for probing gradual protein structural perturbations in the gas phase. However, it is still challenging to track sequential unfolding in the solution phase. Here, we extended IM-MS to track in-solution sequential unfolding of monomeric proteins having single and/or multidomains. The present method combines ultrafast local heating effect (LHE)-driven sequential unfolding with IM-MS identification. Protein sequential unfolding in solution is demonstrated by the rapid and controllable IM-MS data switch between native and gradually unfolded states. Our results show that LHE induces gradual protein conformational transitions associated with biological functions, where IM-MS tracks the sequential unfolding of monomeric proteins.
单体蛋白质的顺序展开对于全面理解这些蛋白质组装体中的局部构象元件(例如二级结构和结构域连接)非常重要。离子淌度-质谱(IM-MS)是一种新兴的、很有前途的技术,可用于探测气相中蛋白质结构的逐渐变化。然而,在溶液相中跟踪顺序展开仍然具有挑战性。在这里,我们将 IM-MS 扩展到可用于追踪具有单结构域和/或多结构域的单体蛋白质在溶液中的顺序展开。本方法将超快局部加热效应(LHE)驱动的顺序展开与 IM-MS 鉴定相结合。通过在天然状态和逐渐展开状态之间快速和可控的 IM-MS 数据切换,证明了溶液中的蛋白质顺序展开。我们的结果表明,LHE 诱导与生物功能相关的逐渐蛋白质构象转变,其中 IM-MS 可追踪单体蛋白质的顺序展开。