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Molecular Force Modulation Spectroscopy Revealing the Dynamic Response of Single Bacteriorhodopsins

机译:分子力调制光谱揭示单个细菌视紫红质的动态响应。

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摘要

Recent advances in atomic force microscopy allowed globular and membrane proteins to be mechanically unfolded on a single-molecule level. Presented is an extension to the existing force spectroscopy experiments. While unfolding single bacteriorhodopsins from native purple membranes, small oscillation amplitudes (6–9 nm) were supplied to the vertical displacement of the cantilever at a frequency of 3 kHz. The phase and amplitude response of the cantilever-protein system was converted to reveal the elastic (conservative) and viscous (dissipative) contributions to the unfolding process. The elastic response (stiffness) of the extended parts of the protein were in the range of a few tens pNm and could be well described by the derivative of the wormlike chain model. Discrete events in the viscous response coincided with the unfolding of single secondary structure elements and were in the range of 1 μNs/m. In addition, these force modulation spectroscopy experiments revealed novel mechanical unfolding intermediates of bacteriorhodopsin. We found that kinks result in a loss of unfolding cooperativity in transmembrane helices. Reconstructing force-distance spectra by the integration of amplitude-distance spectra verified their position, offering a novel approach to detect intermediates during the forced unfolding of single proteins.
机译:原子力显微镜的最新进展使得球状和膜状蛋白质可以在单分子水平上机械展开。提出的是对现有力谱实验的扩展。当从天然紫色膜上展开单个细菌视紫红质时,以3 kHz的频率向悬臂的垂直位移提供小的振荡幅度(6–9 nm)。转换悬臂蛋白系统的相位和幅度响应,以揭示其对展开过程的弹性(保守)和粘性(耗散)贡献。蛋白质延伸部分的弹性响应(刚度)在几十pN / nm的范围内,可以通过蠕虫状链模型的导数很好地描述。粘性响应中的离散事件与单个二级结构元素的展开同时发生,范围为1μNs/ m。此外,这些力调制光谱实验揭示了细菌视紫红质的新型机械展开中间体。我们发现,扭结导致跨膜螺旋展开合作性的损失。通过振幅-距离光谱的整合重建力-距离光谱,验证了它们的位置,提供了一种在单一蛋白质强制展开过程中检测中间体的新颖方法。

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