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单分子荧光实验中双色符合事件的相关矩阵分析。

Correlation-matrix analysis of two-color coincidence events in single-molecule fluorescence experiments.

机构信息

Applied Laser Physics and Laser Spectroscopy, Bielefeld University, Bielefeld, Germany.

出版信息

Anal Chem. 2012 Mar 20;84(6):2729-36. doi: 10.1021/ac2030283. Epub 2012 Feb 29.

Abstract

We introduce a robust and relatively easy-to-use method to evaluate the quality of two-color (or more) fluorescence coincidence measurements based on close investigation of the coincidence correlation-matrix. This matrix contains temporal correlations between the number of detected bursts in individual channels and their coincidences. We show that the Euclidian norm of a vector Γ derived from elements of the correlation matrix takes a value between 0 and 2 depending on the relative coincidence frequency. We characterized the Γ-norm and its dependence on various experimental conditions by computer simulations and fluorescence microscopy experiments. Single-molecule experiments with two differently colored dye molecules diffusing freely in aqueous solution, a sample that generates purely random coincidence events, return a Γ-norm less than one, depending on the concentration of the fluorescent dyes. As perfect coincidence sample we monitored broad autofluorescence of 2.8 μm beads and determined the Γ-norm to be maximal and close to two. As in realistic diagnostic applications, we show that two-color coincidence detection of single-stranded DNA molecules, using differently labeled Molecular Beacons hybridizing to the same target, reveal a value between one and two representing a mixture of an optimal coincidence sample and a sample generating random coincidences. The Γ-norm introduced for data analysis provides a quantifiable measure for quickly judging the outcome of single-molecule coincidence experiments and estimating the quality of detected coincidences.

摘要

我们介绍了一种稳健且相对易用的方法,用于评估双色(或更多色)荧光符合测量的质量,该方法基于对符合相关矩阵的深入研究。该矩阵包含了在各个通道中检测到的爆发数量之间的时间相关性及其符合事件。我们表明,从相关矩阵的元素导出的向量 Γ 的欧几里得范数(Euclidian norm)在 0 和 2 之间变化,具体取决于相对符合频率。我们通过计算机模拟和荧光显微镜实验对 Γ 范数及其对各种实验条件的依赖性进行了特征描述。使用两种不同颜色的染料分子在水溶液中自由扩散的单分子实验产生了纯粹的随机符合事件,其 Γ 范数小于 1,这取决于荧光染料的浓度。作为完美符合的样本,我们监测了 2.8 μm 珠子的宽自发荧光,并确定 Γ 范数最大且接近 2。与实际诊断应用一样,我们展示了使用标记有不同分子信标的双链 DNA 分子的双色符合检测,其值在 1 到 2 之间,代表了最佳符合样本和产生随机符合事件的样本的混合物。引入用于数据分析的 Γ 范数提供了一种可量化的度量标准,用于快速判断单分子符合实验的结果,并估计检测到的符合事件的质量。

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