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Protein interaction quantified in vivo by spectrally resolved fluorescence resonance energy transfer

机译:通过光谱分辨荧光共振能量转移在体内定量蛋白质相互作用

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摘要

We describe a fluorescence resonance energy transfer (FRET)-based method for finding in living cells the fraction of a protein population (αT) forming complexes, and the average number (n) of those protein molecules in each complex. The method relies both on sensitized acceptor emission and on donor de-quenching (by photobleaching of the acceptor molecules), coupled with full spectral analysis of the differential fluorescence signature, in order to quantify the donor/acceptor energy transfer. The approach and sensitivity limits are well suited for in vivo microscopic investigations. This is demonstrated using a scanning laser confocal microscope to study complex formation of the sterile 2 α-factor receptor protein (Ste2p), labelled with green, cyan, and yellow fluorescent proteins (GFP, CFP, and YFP respectively), in budding yeast Saccharomyces cerevisiae. A theoretical model is presented that relates the efficiency of energy transfer in protein populations (the apparent FRET efficiency, Eapp) to the energy transferred in a single donor/acceptor pair (E, the true FRET efficiency). We determined E by using a new method that relies on Eapp measurements for two donor/acceptor pairs, Ste2p–CFP/Ste2p–YFP and Ste2p–GFP/Ste2p–YFP. From Eapp and E we determined αT≈1 and n≈2 for Ste2 proteins. Since the Ste2p complexes are formed in the absence of the ligand in our experiments, we conclude that the α-factor pheromone is not necessary for dimerization.
机译:我们描述了一种基于荧光共振能量转移(FRET)的方法,用于在活细胞中发现形成复合物的蛋白质群体(αT)的比例,以及每个复合物中这些蛋白质分子的平均数(n)。该方法既依赖于敏化的受体发射,也依赖于供体去猝灭(通过受体分子的光漂白),并结合了差分荧光特征的全光谱分析,以量化供体/受体的能量转移。方法和灵敏度极限非常适合于体内显微镜研究。使用扫描激光共聚焦显微镜在无菌酵母芽孢杆菌中研究无菌2α因子受体蛋白(Ste2p)的复合形成,分别用绿色,青色和黄色荧光蛋白(分别为GFP,CFP和YFP)标记。啤酒酵母。提出了一个理论模型,该模型将蛋白质群体中的能量转移效率(表观FRET效率,Eapp)与单个供体/受体对中转移的能量(E,真实的FRET效率)相关。我们使用一种新方法测定E,该方法依赖于两个供体/受体对(Ste2p–CFP / Ste2p–YFP和Ste2p–GFP / Ste2p–YFP)的Eapp测量。根据Eapp和E,我们确定Ste2蛋白的αT≈1和n≈2。由于在我们的实验中Ste2p络合物是在不存在配体的情况下形成的,因此我们得出结论,二聚化不需要α因子信息素。

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