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首页> 外文期刊>Chemical Physics: A Journal Devoted to Experimental and Theoretical Research Involving Problems of Both a Chemical and Physical Nature >Ultrafast electronic and vibrational dynamics of stabilized A state mutants of the green fluorescent protein (GFP): Snipping the proton wire
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Ultrafast electronic and vibrational dynamics of stabilized A state mutants of the green fluorescent protein (GFP): Snipping the proton wire

机译:稳定的绿色荧光蛋白(GFP)的A态突变体的超快电子和振动动力学:截取质子线

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摘要

Two blue absorbing and emitting mutants (S65G/T203V/E222Q and S65T at pH 5.5) of the green fluorescent protein (GFP) have been investigated through ultrafast time resolved infra-red (TRIR) and fluorescence spectroscopy. In these mutants, in which the excited state proton transfer reaction observed in wild-type GFP has been blocked, the photophysics are dominated by the neutral A state. It was found that the A* excited state lifetime is short, indicating that it is relatively less stabilised in the protein matrix than the anionic form. However, the lifetime of the A state can be increased through modifications to the protein structure. The TRIR spectra show that a large shifts in protein vibrational modes on excitation of the A state occurs in both these GFP mutants. This is ascribed to a change in H-bonding interactions between the protein matrix and the excited state.
机译:通过超快分辨红外(TRIR)和荧光光谱法研究了绿色荧光蛋白(GFP)的两个蓝色吸收和发射突变体(S65G / T203V / E222Q和pH为5.5的S65T)。在这些突变体中,在野生型GFP中观察到的激发态质子转移反应已被阻断,光物理被中性A态支配。已经发现,A *激发态寿命短,表明它在蛋白质基质中的稳定度比阴离子形式低。但是,可以通过修饰蛋白质结构来延长A状态的寿命。 TRIR谱表明,在这两个GFP突变体中,在激发A状态时,蛋白质振动模式发生了很大的变化。这归因于蛋白质基质和激发态之间的H键相互作用的变化。

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