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Inter-Dye Distance Distributions Studied by a Combination of Single-Molecule FRET-Filtered Lifetime Measurements and a Weighted Accessible Volume (wAV) Algorithm

机译:通过单分子FRET滤波寿命测量和加权可及体积(wAV)算法的组合研究染料间距离分布

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Förster resonance energy transfer (FRET) is an important tool for studying the structural and dynamical properties of biomolecules. The fact that both the internal dynamics of the biomolecule and the movements of the biomolecule-attached dyes can occur on similar timescales of nanoseconds is an inherent problem in FRET studies. By performing single-molecule FRET-filtered lifetime measurements, we are able to characterize the amplitude of the motions of fluorescent probes attached to double-stranded DNA standards by means of flexible linkers. With respect to previously proposed experimental approaches, we improved the precision and the accuracy of the inter-dye distance distribution parameters by filtering out the donor-only population with pulsed interleaved excitation. A coarse-grained model is employed to reproduce the experimentally determined inter-dye distance distributions. This approach can easily be extended to intrinsically flexible proteins allowing, under certain conditions, to decouple the macromolecule amplitude of motions from the contribution of the dye linkers.
机译:福斯特共振能量转移(FRET)是研究生物分子的结构和动力学性质的重要工具。 FRET研究中固有的问题是,生物分子的内部动力学和与生物分子相连的染料的运动都可能在类似的纳秒级时间尺度上发生。通过执行单分子FRET过滤的寿命测量,我们能够通过柔性接头表征附着在双链DNA标准品上的荧光探针的运动幅度。关于以前提出的实验方法,我们通过用脉冲交错激励滤除纯供体群体,提高了染料间距离分布参数的精度和准确性。使用粗粒度模型来再现实验确定的染料间距离分布。这种方法可以很容易地扩展到固有柔性蛋白上,从而在某些条件下可以使运动的大分子振幅与染料接头的作用脱钩。

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