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The Gas-Phase Absorption Spectrum of a Neutral GFP Model Chromophore

机译:中性GFP模型发色团的气相吸收光谱

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摘要

We have studied the gas-phase absorption properties of the green fluorescent protein (GFP) chromophore in its neutral (protonated) charge state in a heavy-ion storage ring. To accomplish this we synthesized a new molecular chromophore with a charged NH3 group attached to a neutral model chromophore of GFP. The gas-phase absorption cross section of this chromophore molecule as a function of the wavelength is compared to the well-known absorption profile of GFP. The chromophore has a maximum absorption at 415 ± 5 nm. When corrected for the presence of the charged group attached to the GFP model chromophore, the unperturbed neutral chromophore is predicted to have an absorption maximum at 399 nm in vacuum. This is very close to the corresponding absorption peak of the protein at 397 nm. Together with previous data obtained with an anionic GFP model chromophore, the present data show that the absorption of GFP is primarily determined by intrinsic chromophore properties. In other words, there is strong experimental evidence that, in terms of absorption, the conditions in the hydrophobic interior of this protein are very close to those in vacuum.
机译:我们已经研究了在重离子存储环中处于中性(质子化)电荷状态的绿色荧光蛋白(GFP)生色团的气相吸收特性。为了实现这一点,我们合成了一个带有带电荷的NH3基团的新分子发色团,该NH3基团与GFP的中性模型发色团相连。将该生色团分子的气相吸收截面作为波长的函数与众所周知的GFP吸收曲线进行比较。发色团在415±5 nm处具有最大吸收。当校正了附着在GFP模型发色团上的带电基团的存在时,预计不受干扰的中性发色团在真空中的399 nm处具有最大吸收。这非常接近蛋白质在397 nm处的相应吸收峰。与使用阴离子GFP模型发色团获得的先前数据一起,当前数据表明GFP的吸收主要由固有发色团性质决定。换句话说,有强有力的实验证据表明,就吸收而言,该蛋白质疏水内部的条件与真空条件非常接近。

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