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τFCS:多方法全局分析提高了荧光涨落测量的分辨率和灵敏度。

τFCS: multi-method global analysis enhances resolution and sensitivity in fluorescence fluctuation measurements.

作者信息

Anthony Neil R, Berland Keith M

机构信息

Department of Physics, Emory University, Atlanta, Georgia, United States of America.

出版信息

PLoS One. 2014 Feb 28;9(2):e90456. doi: 10.1371/journal.pone.0090456. eCollection 2014.

Abstract

Fluorescence fluctuation methods have become invaluable research tools for characterizing the molecular-level physical and chemical properties of complex systems, such as molecular concentrations, dynamics, and the stoichiometry of molecular interactions. However, information recovery via curve fitting analysis of fluctuation data is complicated by limited resolution and challenges associated with identifying accurate fit models. We introduce a new approach to fluorescence fluctuation spectroscopy that couples multi-modal fluorescence measurements with multi-modal global curve fitting analysis. This approach yields dramatically enhanced resolution and fitting model discrimination capabilities in fluctuation measurements. The resolution enhancement allows the concentration of a secondary species to be accurately measured even when it constitutes only a few percent of the molecules within a sample mixture, an important new capability that will allow accurate measurements of molecular concentrations and interaction stoichiometry of minor sample species that can be functionally important but difficult to measure experimentally. We demonstrate this capability using τFCS, a new fluctuation method which uses simultaneous global analysis of fluorescence correlation spectroscopy and fluorescence lifetime data, and show that τFCS can accurately recover the concentrations, diffusion coefficients, lifetimes, and molecular brightness values for a two component mixture over a wide range of relative concentrations.

摘要

荧光涨落方法已成为表征复杂系统分子水平物理和化学性质的重要研究工具,例如分子浓度、动力学以及分子相互作用的化学计量。然而,通过对涨落数据进行曲线拟合分析来恢复信息会因分辨率有限以及与识别精确拟合模型相关的挑战而变得复杂。我们引入了一种新的荧光涨落光谱方法,该方法将多模态荧光测量与多模态全局曲线拟合分析相结合。这种方法在涨落测量中显著提高了分辨率和拟合模型辨别能力。分辨率的提高使得即使次要物种仅占样品混合物中分子的百分之几,也能准确测量其浓度,这是一项重要的新能力,将有助于准确测量功能上重要但实验上难以测量的少量样品物种的分子浓度和相互作用化学计量。我们使用τFCS(一种新的涨落方法,它同时对荧光相关光谱和荧光寿命数据进行全局分析)展示了这种能力,并表明τFCS能够在广泛的相对浓度范围内准确恢复两组分混合物的浓度、扩散系数、寿命和分子亮度值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a6b9/3938748/54e921158f4b/pone.0090456.g001.jpg

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