Institut für Physikalische Chemie, Lehrstuhl für Molekulare Physikalische Chemie, Heinrich-Heine-Universität, Universitätsstrasse 1, Geb 26.32, 40225 Düsseldorf, Germany.
J Phys Chem B. 2010 May 13;114(18):6197-206. doi: 10.1021/jp100025v.
Single-molecule FRET experiments on freely diffusing rigid molecules frequently show FRET efficiency (E) distributions broader than those defined by photon statistics. It is often unclear whether the observed extra broadening can be attributed to a physical donor-acceptor distance (R(DA)) distribution. Using double-stranded DNA (dsDNA) labeled with Alexa488 and Cy5 (or Alexa647) as a test system, we investigate various possible contributions to the E distribution width. On the basis of simultaneous analysis of donor and acceptor intensities and donor lifetimes, we conclude that dsDNA chain dynamics can be ruled out as a possible reason for the observed E distribution broadening. We applied a set of tools to demonstrate that complex acceptor dye photophysics can represent a major contribution to the E distribution width. Quantitative analysis of the correlation between FRET efficiency and donor fluorescence lifetime in 2D multiparameter histograms allows one to distinguish between broadening due to distinct FRET or dye species. Moreover, we derived a simple theory, which predicts that the apparent distance width due to acceptor fluorescence quantum yield variations increases linearly with physical donor-acceptor distance. This theory nicely explains the experimentally observed FRET broadening of a series of freely diffusing labeled dsDNA and dsRNA molecules. Accounting for multiple acceptor states allowed the fitting of experimental E distributions, assuming a single fixed donor-acceptor distance.
在对自由扩散的刚性分子进行单分子 FRET 实验时,常常会观察到 FRET 效率(E)分布比光子统计定义的分布更宽。通常不清楚观察到的额外展宽是否可以归因于物理供体-受体距离(R(DA))分布。我们使用双链 DNA(dsDNA)作为测试系统,该 dsDNA 用 Alexa488 和 Cy5(或 Alexa647)标记,研究了导致 E 分布宽度的各种可能的贡献。基于对供体和受体强度以及供体寿命的同时分析,我们得出结论,dsDNA 链动力学可以排除为观察到的 E 分布展宽的可能原因。我们应用了一组工具来证明复杂的受体染料光物理可以代表 E 分布宽度的主要贡献。在二维多参数直方图中定量分析 FRET 效率与供体荧光寿命之间的相关性,可以区分由于不同的 FRET 或染料种类引起的展宽。此外,我们推导出了一个简单的理论,该理论预测由于受体荧光量子产率变化引起的表观距离宽度与物理供体-受体距离呈线性关系。该理论很好地解释了一系列自由扩散标记 dsDNA 和 dsRNA 分子的实验观察到的 FRET 展宽。考虑到多个受体状态,可以在假设单个固定供体-受体距离的情况下拟合实验 E 分布。