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A photoelectron imaging and quantum chemistry study of the deprotonated cyan fluorescent protein chromophore anion

机译:去质子化青色荧光蛋白发色团阴离子的光电子成像和量子化学研究

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摘要

Cyan fluorescent protein (CFP), a blue-shifted analogue of green fluorescent protein, is used widely as a fluorescence resonance energy transfer donor in live cell fluorescence imaging. Here, we use a combination of anion photoelectron spectroscopy experiments and quantum chemistry calculations to probe the electronic structure of the CFP chromophore in its deprotonated anionic form. The vertical detachment energy measured as the maximum in the photoelectron spectrum is eV, which is an improvement on our earlier measurement. We see evidence for competing internal conversion following resonant excitation of electronically excited states of the anion lying in the detachment continuum. We find that the first electronically excited valence state of the anion lies very close to the detachment threshold, supporting the conclusions of gas-phase photodestruction action spectroscopy measurements, and that the second electronically excited valence state lies around 1.25 eV above the detachment threshold. These electronic states have shape resonance character and mixed excited shape and Feshbach resonance character, respectively.
机译:青色荧光蛋白(CFP)是一种绿色荧光蛋白的蓝移模类似物,广泛用于活细胞荧光成像中的荧光共振能量转移供体。这里,我们使用阴离子光电子能谱实验和量子化学计算的组合来探测其在去质子化阴离子形式中的CFP发色团的电子结构。作为光电子谱中的最大值测量的垂直拆卸能量是EV,这是对我们早期测量的改进。在脱离连续统一统一中的电子激发态的谐振激发之后,我们看到竞争内部转换的证据。我们发现阴离子的第一个电子激发价状态非常接近脱离阈值,支持气相光脱离行动动作光谱测量的结论,并且第二电子激发价态位于脱离阈值之上的1.25eV约为1.25eV。这些电子状态分别具有形状的共振特征和混合激发形状和Feshbach共振字符。

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