首页> 外文期刊>Journal of Microscopy >Using c-Fos/c-Jun as hetero-dimer interaction model to optimize donor to acceptor concentration ratio range for three-filter fluorescence resonance energy transfer (FRET) measurement
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Using c-Fos/c-Jun as hetero-dimer interaction model to optimize donor to acceptor concentration ratio range for three-filter fluorescence resonance energy transfer (FRET) measurement

机译:使用c-Fos / c-Jun作为异二聚体相互作用模型来优化供体与受体的浓度比范围,以进行三滤器荧光共振能量转移(FRET)测量

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摘要

Sensitized emission FRET detection method based on three-filter fluorescence microscopy is widely used and more suitable for live cell FRET imaging and dynamic protein-protein interaction analysis. But when it is applied to detect two proteins interaction in living cells, this intensity-based detection method is complicated by many experimental factors such as spectral crosstalk and spectral bleed-through and variable donor to acceptor concentration ratio. There are several FRET algorithms developed recently to correct those factors in order to quantitatively gauge and compare FRET signals between different experimental groups. But the algorithms are often difficult to choose when they are applied to certain experiments. In this research, we use c-Fos/c-Jun as a simple hetero-dimer interaction model to quantitatively detect and compare the FRET signals based on the following widely used sensitized emission FRET algorithms: N FRET, FRET N, FR, FRET R, E app and E EFF. We optimized the donor to acceptor concentration ratio range for the above FRET algorithms and facilitate their use in accurate FRET signal determination based on the three-filter FRET microscopy.
机译:基于三滤荧光显微镜的敏化发射FRET检测方法被广泛使用,更适合于活细胞FRET成像和动态蛋白质-蛋白质相互作用分析。但是,当将其用于检测活细胞中两种蛋白质相互作用时,这种基于强度的检测方法由于许多实验因素而变得复杂,例如光谱串扰和光谱渗漏以及可变的供体与受体浓度比。最近开发了几种FRET算法来校正这些因素,以便定量测量和比较不同实验组之间的FRET信号。但是,将算法应用于某些实验时,通常很难选择这些算法。在这项研究中,我们使用c-Fos / c-Jun作为简单的异二聚体相互作用模型,基于以下广泛使用的敏化发射FRET算法来定量检测和比较FRET信号:N FRET,FRET N,FR,FRET R ,E app和E EFF。我们针对上述FRET算法优化了供体与受体的浓度比范围,并基于三过滤器FRET显微镜,方便了它们在准确的FRET信号确定中的使用。

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