首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Absorption and Emission Spectroscopic Investigation of the Thermal Dynamics of the Archaerhodopsin 3 Based Fluorescent Voltage Sensor QuasAr1
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Absorption and Emission Spectroscopic Investigation of the Thermal Dynamics of the Archaerhodopsin 3 Based Fluorescent Voltage Sensor QuasAr1

机译:基于古细菌视紫红质3的荧光电压传感器QuasAr1的吸收和发射光谱研究。

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摘要

QuasAr1 is a fluorescent voltage sensor derived from Archaerhodopsin 3 (Arch) of Halorubrum sodomense by directed evolution. Here we report absorption and emission spectroscopic studies of QuasAr1 in Tris buffer at pH 8. Absorption cross-section spectra, fluorescence quantum distributions, fluorescence quantum yields, and fluorescence excitation spectra were determined. The thermal stability of QuasAr1 was studied by long-time attenuation coefficient measurements at room temperature (23 ± 2 °C) and at 2.5 ± 0.5 °C. The apparent melting temperature was determined by stepwise sample heating up and cooling down (obtained apparent melting temperature: 65 ± 3 °C). In the protein melting process the originally present protonated retinal Schiff base (PRSB) with absorption maximum at 580 nm converted to de-protonated retinal Schiff base (RSB) with absorption maximum at 380 nm. Long-time storage of QuasAr1 at temperatures around 2.5 °C and around 23 °C caused gradual protonated retinal Schiff base isomer changes to other isomer conformations, de-protonation to retinal Schiff base isomers, and apoprotein structure changes showing up in ultraviolet absorption increase. Reaction coordinate schemes are presented for the thermal protonated retinal Schiff base isomerizations and deprotonations in parallel with the dynamic apoprotein restructurings.
机译:QuasAr1是一种荧光电压传感器,它是通过定向进化从嗜血哈鲁巴氏杆菌古细菌视紫红质3(Arch)衍生而来的。在这里,我们报告了在pH 8的Tris缓冲液中QuasAr1的吸收和发射光谱研究。确定了吸收截面光谱,荧光量子分布,荧光量子产率和荧光激发光谱。通过在室温(23±2°C)和2.5±0.5°C下进行长时间衰减系数测量,研究了QuasAr1的热稳定性。通过逐步加热和冷却样品来确定表观熔融温度(获得的表观熔融温度:65±3°C)。在蛋白质熔化过程中,最初存在的在580 nm处具有最大吸收的质子化视网膜席夫碱(PRSB)转换为在380 nm处具有最大吸收的去质子化的视网膜席夫碱(RSB)。 QuasAr1在约2.5°C和约23°C的温度下长期保存会导致逐渐形成质子化的视网膜席夫碱异构体变为其他异构体构型,使质子化为视网膜席夫碱异构体,并且脱辅基蛋白质结构的变化在紫外线吸收方面有所增加。提出了反应坐标方案,用于热质子化视网膜席夫碱的异构化和去质子化,同时进行动态载脂蛋白重组。

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