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首页> 外文期刊>Angewandte Chemie >Quantifying the Initial Unfolding of Bacteriorhodopsin Reveals Retinal Stabilization
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Quantifying the Initial Unfolding of Bacteriorhodopsin Reveals Retinal Stabilization

机译:量化细菌的初始展开揭示视网膜稳定性

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摘要

The forces that stabilize membrane proteins remain elusive to precise quantification. Particularly important, but poorly resolved, are the forces present during the initial unfolding of a membrane protein, where the most native set of interactions is present. A high-precision, atomic force microscopy assay was developed to study the initial unfolding of bacteriorhodopsin. A rapid near-equilibrium folding between the first three unfolding states was discovered, the two transitions corresponded to the unfolding of five and three amino acids, respectively, when using a cantilever optimized for 2s resolution. The third of these states was retinal-stabilized and previously undetected, despite being the most mechanically stable state in the whole unfolding pathway, supporting 150pN for more than 1min. This ability to measure the dynamics of the initial unfolding of bacteriorhodopsin provides a platform for quantifying the energetics of membrane proteins under native-like conditions.
机译:稳定膜蛋白的力仍然难以精确定量。 特别重要但解决不良,是在膜蛋白的初始展开期间存在的力,其中存在最多的互动组。 开发了一种高精度原子力显微镜测定,以研究细菌的初始展开。 发现前三个展开状态之间的快速近均衡折叠,当使用悬臂优化2S分辨率时,两个转变分别对应于五和三个氨基酸的展开。 尽管在整个展开途径中是最具机械稳定的状态,但这些状态的三分之一是视网膜稳定和先前未被发现的,支撑150pn超过1分钟。 这种测量初始展开的细菌的能力的能力提供了一种用于量化膜蛋白在天然状的条件下的能量的平台。

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