Department of Biophysics and Cell Biology, Faculty of Medicine, University of Debrecen.
Gynecologic Oncology Division, Stanford University School of Medicine.
J Vis Exp. 2021 Apr 22(170). doi: 10.3791/62241.
Förster Resonance Energy Transfer (FRET) is the radiationless transfer of energy from an excited donor to an acceptor molecule and depends upon the distance and orientation of the molecules as well as the extent of overlap between the donor emission and acceptor absorption spectra. FRET permits to study the interaction of proteins in the living cell over time and in different subcellular compartments. Different intensity-based algorithms to measure FRET using microscopy have been described in the literature. Here, a protocol and an algorithm are provided to quantify FRET efficiency based on measuring both the sensitized emission of the acceptor and quenching of the donor molecule. The quantification of ratiometric FRET in the living cell not only requires the determination of the crosstalk (spectral spill-over, or bleed-through) of the fluorescent proteins but also the detection efficiency of the microscopic setup. The protocol provided here details how to assess these critical parameters.
Förster 共振能量转移(FRET)是能量从激发态供体向受体分子的无辐射转移,取决于分子的距离和取向以及供体发射光谱和受体吸收光谱之间的重叠程度。FRET 可用于研究活细胞中蛋白质随时间和在不同亚细胞区室中的相互作用。文献中已经描述了使用显微镜测量 FRET 的基于强度的不同算法。在这里,提供了一种基于测量受体的敏化发射和供体分子的猝灭来定量 FRET 效率的协议和算法。在活细胞中定量比率 FRET 不仅需要确定荧光蛋白的串扰(光谱溢出或漏出),还需要确定显微镜设置的检测效率。这里提供的协议详细说明了如何评估这些关键参数。