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FLIM-FRET Microscopy to Visualize Transcription Factor Interactions in the Nucleus of the Living Cell

机译:Flim-FRET显微镜可视化活细胞核中的转录因子相互作用

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Wide-field fluorescence microscopy was used to monitor the co-localization of the homeodomain (HD) transcription factor Pit-1 and the basic-leucine zipper protein CCAAT/enhancer binding protein alpha (C/EBPα), each labeled with fluorescent proteins (FP) in the living cell nucleus. Fluorescence resonance energy transfer (FRET) microscopy was used to resolve the angstrom-scale spatial relationships of these expressed proteins, and the effect of a Pit-1 point mutation on the interaction with C/EBPα was characterized. Two-photon excitation fluorescence lifetime imaging microscopy (2p-FLIM) was then used as an independent method to detect these protein interactions. The excited-state lifetime for the cyan FP (CFP) labeling C/EBPα was determined, and the measurements were repeated in cells co-expressing yellow FP (YFP) labeled-proteins. The CFP lifetime was decreased in the presence of the YFP acceptor, which is consistent with donor quenching by FRET. This was verified by acceptor photobleaching, which caused a shift in the donor lifetime to that similar to the donor alone. However, a significant limitation of this technique was demonstrated by the observation that high-energy 2p-excitation resulted in CFP photobleaching and a parallel decrease in its excited-state lifetime. The key question is whether the sensitivity of this imaging approach will be sufficient to acquire significant data from living cells expressing physiological levels of the labeled proteins.
机译:用于监测同源域(HD)转录因子坑1和碱性亮氨酸拉链蛋白CCAAT /增强剂结合蛋白α(C /EBPα)的共定位,每种荧光蛋白(FP )在活细胞核中。荧光共振能量转移(FRET)显微镜用于解析这些表达蛋白质的血管级空间关系,并表征了坑1点突变对与C /EBPα相互作用的影响。然后将双光子激发荧光寿命成像显微镜(2p-flim)作为检测这些蛋白质相互作用的独立方法。确定了CyAn FP(CFP)标记C /EBPα的激发态寿命,并在COM COM COLS中重复测量黄色FP(YFP)标记蛋白。在YFP受体存在下,CFP寿命减少,这与FRET的供体淬火一致。这是通过受体光漂白验证,这导致捐赠寿命的转变为单独的捐赠者。然而,通过观察结果,通过观察到的高能量2P激发导致CFP光漂白和其激发态寿命平行减少,证明了该技术的显着限制。关键问题是这种成像方法的敏感性是否足以从表达标记蛋白的生理水平的生理水平获取显着的数据。

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