首页> 外文期刊>Chemical Physics: A Journal Devoted to Experimental and Theoretical Research Involving Problems of Both a Chemical and Physical Nature >Measuring ultrafast protein folding rates from photon-by-photon analysis of single molecule fluorescence trajectories
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Measuring ultrafast protein folding rates from photon-by-photon analysis of single molecule fluorescence trajectories

机译:通过单分子荧光轨迹的逐个光子分析测量超快蛋白质折叠速率

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摘要

Folding and unfolding rates for the ultrafast folding villin subdomain were determined from a photon-by- photon analysis of fluorescence trajectories in single molecule FRET experiments. One of the obstacles to measuring fast kinetics in single molecule fluorescence experiments is blinking of the fluorophores on a timescale that is not well separated from the process of interest. By incorporating acceptor blinking into a two-state kinetics model, we show that it is possible to extract accurate rate coefficients on the microsecond time scale for folding and unfolding using the maximum likelihood method of Gopich and Szabo. This method yields the most likely parameters of a given model that can reproduce the observed photon trajectories. The extracted parameters agree with both the decay rate of the donor-acceptor cross correlation function and the results of ensemble equilibrium and kinetic experiments using nanosecond laser temperature jump.
机译:通过单分子FRET实验中荧光轨迹的逐个光子分析确定超快速折叠villin子域的折叠和解折叠速率。在单分子荧光实验中测量快速动力学的障碍之一是荧光团在与所关注的过程没有很好分开的时间尺度上闪烁。通过将受体眨眼合并到两种状态的动力学模型中,我们表明可以使用Gopich和Szabo的最大似然方法在微秒级的时间尺度上提取折叠和展开的准确速率系数。该方法产生给定模型的最可能参数,该参数可以重现观察到的光子轨迹。提取的参数与供体-受体互相关函数的衰减率以及使用纳秒激光温度跳跃的整体平衡和动力学实验的结果一致。

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