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Improving single-molecule FRET measurements by confining molecules in nanopipettes

机译:通过限制纳米坯的分子改善单分子摩托测量

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In recent years Fluorescence Resonance Energy Transfer (FRET) has been widely used to determine distances, observe distance dynamics, and monitor molecular binding at the single-molecule level. A basic constraint of single-molecule FRET studies is the limited distance resolution owing to low photon statistics. We demonstrate that by confining molecules in nanopipettes (50-100 nm diameter) smFRET can be measured with improved photon statistics reducing the width of FRET proximity ratio distributions (PRD). This increase in distance resolution makes it possible to reveal subpopulations and dynamics in biomolecular complexes. Our data indicate that the width of PRD is not only determined by photon statistics (shot noise) and distance distributions between the chromophores but that photoinduced dark states of the acceptor also contribute to the PRD width. Furthermore, acceptor dark states such as triplet states influence the accuracy of determined mean FRET values. In this context, we present a strategy for the correction of the shift of the mean PR that is related to triplet induced blinking of the acceptor using reference FCS measurements.
机译:近年来,荧光共振能量转移(FRET)已被广泛用于确定距离,观察距离动力学和在单分子水平下监测分子结合。由于低光子统计,单分子FRET研究的基本限制是距离分辨率有限。我们证明,通过改善光子统计可以通过改进的光子统计来测量纳米件(50-100nm直径)SMFRet的分子,降低了FRET邻近比分布(PRD)的宽度。距离分辨率的增加使得可以在生物分子复合物中揭示群体和动力学。我们的数据表明PRD的宽度不仅由光子统计(射击噪声)和发色团之间的距离分布而决定,而且接受受焊的暗状态也有助于PRD宽度。此外,诸如三联状态的受体暗状态会影响确定的平均荧光值的准确性。在这种情况下,我们提出了一种校正与使用参考FCS测量的Triplet诱导闪烁相关的平均PR的偏移的策略。

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