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Hidden dynamics in the unfolding of individual bacteriorhodopsin proteins

机译:单个细菌视紫红质蛋白展开中的隐藏动力学

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摘要

Protein folding occurs as a set of transitions between structural states within an energy landscape. An oversimplified view of the folding process emerges when transiently populated states are undetected because of limited instrumental resolution. Using force spectroscopy optimized for 1-μs resolution, we reexamined the unfolding of individual bacteriorhodopsin molecules in native lipid bilayers. The experimental data reveal the unfolding pathway in unprecedented detail. Numerous newly detected intermediates—many separated by as few as 2– 3 amino acids—exhibited complex dynamics, including frequent refolding and state occupancies of <10 μs. Equilibrium measurements between such states enabled the folding free-energy landscape to be deduced. These results sharpen the picture of the mechanical unfolding of membrane proteins and, more broadly, enable experimental access to previously obscured protein dynamics.
机译:蛋白质折叠是在能量格局内结构状态之间的一组过渡而发生的。当由于有限的仪器分辨率而无法检测到瞬态填充状态时,就会出现折叠过程的过于简化的视图。使用针对1μs分辨率优化的力谱,我们重新检查了天然脂双层中单个细菌视紫红质分子的展开。实验数据揭示了前所未有的细节。许多新近检测到的中间体(许多仅被2至3个氨基酸隔开)表现出复杂的动力学,包括频繁的重折叠和状态占用时间<10μs。在这些状态之间进行平衡测量可以推导出折叠自由能态。这些结果使膜蛋白机械展开的图像更加清晰,并且更广泛地讲,使得能够通过实验获得先前模糊的蛋白动力学。

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