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首页> 外文期刊>Biophysical Journal >Simultaneous multicolor fluorescence cross-correlation spectroscopy to detect higher order molecular interactions using single wavelength laser excitation
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Simultaneous multicolor fluorescence cross-correlation spectroscopy to detect higher order molecular interactions using single wavelength laser excitation

机译:同时多色荧光互相关光谱法,使用单波长激光激发来检测高阶分子相互作用

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摘要

Fluorescence cross-correlation spectroscopy is a powerful method for the study of molecular interactions and dynamics in solution and even in living cells. Usually, in the optical setup, either two laser beams have to be superimposed in their respective confocal volumes or two-photon excitation is used for a dual-color detection system. It has been shown recently that fluorescence cross correlation can be achieved with spectrally similar fluorophores using single wavelength excitation fluorescence cross-correlation spectroscopy (SW-FCCS). In this study, we show that SW-FCCS allows the simultaneous excitation of up to three fluorophores in which the cross correlation of their fluctuation signals is detected separately in three detection channels. The experimental and theoretical model to describe triple pairwise cross correlations incorporating cross talk and possible changes in emission characteristics such as quenching upon binding are outlined. The effectiveness of SW-FCCS to detect binding of three interacting partners is experimentally verified with a standard ligand-receptor model, biotin-streptavidin, where differently labeled biotin ligands and their binding to a third-color labeled streptavidin are studied. The cross-correlation amplitudes and their changes with stoichiometric binding are analyzed and the upper limits of dissociation constants are determined. Performed with appropriate negative controls, SW-FCCS can determine interaction patterns between ligands and receptors.
机译:荧光互相关光谱法是研究溶液甚至活细胞中分子相互作用和动力学的有力方法。通常,在光学装置中,必须将两个激光束叠加在其各自的共焦体积中,或者将双光子激发用于双色检测系统。最近已经显示,可以使用单波长激发荧光互相关光谱法(SW-FCCS),通过光谱相似的荧光团实现荧光互相关。在这项研究中,我们表明SW-FCCS允许同时激发多达三个荧光团,其中在三个检测通道中分别检测到其波动信号的互相关。概述了实验和理论模型,用于描述结合了串扰的三对配对互相关和发射特性的可能变化,例如结合时猝灭。 SW-FCCS检测三个相互作用伴侣的结合的有效性已通过标准配体-受体模型生物素-链霉亲和素进行了实验验证,其中研究了标记不同的生物素配体及其与第三种颜色标记的链霉亲和素的结合。分析了互相关幅度及其随化学计量结合的变化,并确定了解离常数的上限。通过适当的阴性对照,SW-FCCS可以确定配体和受体之间的相互作用方式。

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