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Kinetic and thermodynamic study of the bacteriorhodopsin photocycle over a wide pH range.

机译:在宽pH范围内细菌视紫红质光循环的动力学和热力学研究。

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摘要

The photocycle of bacteriorhodopsin and its thermodynamic parameters were studied in the pH range of 4.5-9. Measurements were performed at five different wavelengths (410, 500, 570, 610, and 650 nm), in the time interval 300 ns to 0.5 s, at six temperatures between 5 and 30 degreesC. Data were fitted to different photocycle models. The sequential model with reversible reactions gave a good fit, and the linear character of the Eyring plots was fulfilled. The parallel model with unidirectional reactions gave a poor fit, and the Eyring plot of the rate constants did not follow the expected linear behavior. When a parallel model with reversible reactions, which has twice as many free parameters as the sequential model, was considered, the quality of the fit did not improve and the Eyring plots were not linear. The sequential model was used to determine the thermodynamic activation parameters (activation enthalpy, entropy, and free energy) of the transitions and the free energy levels of the intermediates. pH dependence of the parameters revealed details of the transitions between the intermediates: the transitions M1 to M2 and N to O disclosed a large entropy increase, which could be interpreted as a loosening of the protein structure. The pH dependence of the energy levels explains the disappearance of intermediate O at high pH. A hypothesis is proposed to interpret the relation between the observed pKa of the photocycle energetics and the role of several amino acids in the protein.
机译:在4.5-9的pH范围内研究了细菌视紫红质的光循环及其热力学参数。在5到30摄氏度之间的六个温度下,以300 ns至0.5 s的时间间隔在五个不同的波长(410、500、570、610和650 nm)下进行测量。数据适合不同的光周期模型。具有可逆反应的顺序模型具有良好的拟合度,并且满足了Eyring图的线性特征。具有单向反应的并行模型拟合效果较差,并且速率常数的Eyring图未遵循预期的线性行为。当考虑具有可逆反应的并行模型(其自由参数是顺序模型的两倍)时,拟合质量没有改善,并且Eyring图不是线性的。顺序模型用于确定过渡的热力学活化参数(活化焓,熵和自由能)和中间体的自由能级。参数的pH依赖性揭示了中间体之间过渡的详细信息:过渡M1至M2和N至O揭示了很大的熵增加,这可以解释为蛋白质结构的松散。能级的pH依赖性解释了高pH下中间体O的消失。提出了一种假设来解释所观察到的光循环能量的pKa与蛋白质中几种氨基酸的作用之间的关系。

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