Feige Jérôme N, Sage Daniel, Wahli Walter, Desvergne Béatrice, Gelman Laurent
Center for Integrative Genomics, NCCR Frontiers in Genetics, University of Lausanne, Switzerland.
Microsc Res Tech. 2005 Sep;68(1):51-8. doi: 10.1002/jemt.20215.
Fluorescence resonance energy transfer (FRET) allows the user to investigate interactions between fluorescent partners. One crucial issue when calculating sensitized emission FRET is the correction for spectral bleed-throughs (SBTs), which requires to calculate the ratios between the intensities in the FRET and in the donor or acceptor settings, when only the donor or acceptor are present. Theoretically, SBT ratios should be constant. However, experimentally, these ratios can vary as a function of fluorophore intensity, and assuming constant values may hinder precise FRET calculation. One possible cause for such a variation is the use of a microscope set-up with different photomultipliers for the donor and FRET channels, a set-up allowing higher speed acquisitions on very dynamic fluorescent molecules in living cells. Herein, we show that the bias introduced by the differential response of the two PMTs can be circumvented by a simple modeling of the SBT ratios as a function of fluorophore intensity. Another important issue when performing FRET is the localization of FRET within the cell or a population of cells. We hence developed a freely available ImageJ plug-in, called PixFRET, that allows a simple and rapid determination of SBT parameters and the display of normalized FRET images. The usefulness of this modeling and of the plug-in are exemplified by the study of FRET in a system where two interacting nuclear receptors labeled with ECFP and EYFP are coexpressed in living cells.
荧光共振能量转移(FRET)可让使用者研究荧光伴侣之间的相互作用。计算敏化发射FRET时的一个关键问题是光谱渗漏(SBT)校正,这需要计算仅存在供体或受体时FRET设置以及供体或受体设置中强度之间的比率。理论上,SBT比率应该是恒定的。然而,在实验中,这些比率可能会随荧光团强度而变化,假设其值恒定可能会阻碍精确的FRET计算。这种变化的一个可能原因是在供体和FRET通道使用配备不同光电倍增管的显微镜设置,这种设置允许对活细胞中非常动态的荧光分子进行更高速度的采集。在此,我们表明,通过将SBT比率简单建模为荧光团强度的函数,可以规避两个光电倍增管的差异响应所引入的偏差。进行FRET时的另一个重要问题是FRET在细胞或细胞群体中的定位。因此,我们开发了一个免费的ImageJ插件,称为PixFRET,它可以简单快速地确定SBT参数并显示归一化的FRET图像。在一个系统中对FRET进行研究,其中用ECFP和EYFP标记的两个相互作用的核受体在活细胞中共表达,以此例证了这种建模和插件的实用性。