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Conformational Dynamics of a Single Protein Monitored for 24 h at Video Rate

机译:在视频速率下监测24小时的单个蛋白质的构象动态

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摘要

We use plasmon rulers to follow the conformational dynamics of a single protein for up to 24 h at a video rate. The plasmon ruler consists of two gold nanospheres connected by a single protein linker. In our experiment, we follow the dynamics of the molecular chaperone heat shock protein 90 (Hsp90), which is known to show "open" and "closed" conformations. Our measurements confirm the previously known conformational dynamics with transition times in the second to minute time scale and reveals new dynamics on the time scale of minutes to hours. Plasmon rulers thus extend the observation bandwidth 3-4 orders of magnitude with respect to single-molecule fluorescence resonance energy transfer and enable the study of molecular dynamics with unprecedented precision.
机译:我们使用等离子体统治者以视频速率遵循单个蛋白质的构象动态至高达24小时。 等离子体尺子由单个蛋白质接头连接的两个金纳米球组成。 在我们的实验中,我们遵循分子伴侣热休克蛋白90(HSP90)的动态,这已知已知为“开放”和“闭合”构象。 我们的测量在第二次时间尺度中确认了先前已知的构象动态,并在几分钟内显示了新动态的时间。 因此,等离子体统治者相对于单分子荧光共振能量转移延伸了观察带宽3-4幅度级,并能够以前所未有的精度研究分子动力学。

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