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Cross Talk Free Fluorescence Cross Correlation Spectroscopy in Live Cells

机译:活细胞中的无串扰荧光互相关光谱

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摘要

Fluorescence correlation spectroscopy (FCS) is now a widely used technique to measure small ensembles of labeled biomolecules with single molecule detection sensitivity (e.g., low endogenous concentrations). Fluorescence cross correlation spectroscopy (FCCS) is a derivative of this technique that detects the synchronous movement of two biomolecules with different fluorescence labels. Both methods can be applied to live cells and, therefore, can be used to address a variety of unsolved questions in cell biology. Applications of FCCS with autofluorescent proteins (AFPs) have been hampered so far by cross talk between the detector channels due to the large spectral overlap of the fluorophores. Here we present a new method that combines advantages of these techniques to analyze binding behavior of proteins in live cells. To achieve this, we have used dual color excitation of a common pair of AFPs, ECFP and EYFP, being discriminated in excitation rather than in emission. This is made possible by pulsed excitation and detection on a shorter timescale compared to the average residence time of particles in the FCS volume element. By this technique we were able to eliminate cross talk in the detector channels and obtain an undisturbed cross correlation signal. The setup was tested with ECFP/EYFP lysates as well as chimeras as negative and positive controls and demonstrated to work in live HeLa cells coexpressing the two fusion proteins ECFP-connexin and EYFP-connexin.
机译:荧光相关光谱法(FCS)现在是一种广泛使用的技术,以单分子检测灵敏度(例如低内源浓度)来测量标记生物分子的小集合。荧光互相关光谱法(FCCS)是该技术的衍生产品,可检测具有不同荧光标记的两个生物分子的同步运动。两种方法均可应用于活细胞,因此可用于解决细胞生物学中许多未解决的问题。迄今为止,由于荧光团的光谱重叠大,检测器通道之间的串扰阻碍了FCCS与自发荧光蛋白(AFP)的应用。在这里,我们提出了一种结合这些技术优势来分析活细胞中蛋白质结合行为的新方法。为了实现这一点,我们使用了常见的一对AFP,ECFP和EYFP的双色激发,在激发而不是发射中加以区分。与FCS体积元素中颗粒的平均停留时间相比,可以通过在更短的时间范围内进行脉冲激发和检测来实现这一点。通过这种技术,我们能够消除检测器通道中的串扰,并获得不受干扰的互相关信号。用ECFP / EYFP裂解物以及嵌合体作为阴性和阳性对照测试了该设置,并证明其可在共表达两种融合蛋白ECFP-连接蛋白和EYFP-连接蛋白的活HeLa细胞中工作。

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