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Solid-state NMR spectroscopy based atomistic view of a membrane protein unfolding pathway

机译:基于固态NMR光谱的膜蛋白展开途径的原子观

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摘要

Membrane protein folding, structure, and function strongly depend on a cell membrane environment, yet detailed characterization of folding within a lipid bilayer is challenging. Studies of reversible unfolding yield valuable information on the energetics of folding and on the hierarchy of interactions contributing to protein stability. Here, we devise a methodology that combines hydrogen-deuterium (H/D) exchange and solid-state NMR (SSNMR) to follow membrane protein unfolding in lipid membranes at atomic resolution through detecting changes in the protein water-accessible surface, and concurrently monitoring the reversibility of unfolding. We obtain atomistic description of the reversible part of a thermally induced unfolding pathway of a seven-helical photoreceptor. The pathway is visualized through SSNMR-detected snapshots of H/D exchange patterns as a function of temperature, revealing the unfolding intermediate and its stabilizing factors. Our approach is transferable to other membrane proteins, and opens additional ways to characterize their unfolding and stabilizing interactions with atomic resolution.
机译:膜蛋白的折叠,结构和功能在很大程度上取决于细胞膜环境,但是在脂双层中折叠的详细表征具有挑战性。可逆展开的研究产生了关于折叠的能量学以及有助于蛋白质稳定性的相互作用层次的有价值的信息。在这里,我们设计了一种方法,该方法结合了氢-氘(H / D)交换和固态NMR(SSNMR),以通过检测蛋白质水可及表面的变化并同时监测脂质以原子分辨率跟踪脂质膜中膜蛋白的展开。展开的可逆性。我们获得了七螺旋感光器的热诱导展开路径的可逆部分的原子描述。通过SSNMR检测到的H / D交换模式快照作为温度的函数,可以看到该途径,揭示了展开的中间体及其稳定因子。我们的方法可转移至其他膜蛋白,并开辟了其他方法来表征它们与原子分辨率的展开和稳定相互作用。

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