首页> 外文期刊>Biochimica et biophysica acta. Bioenergetics >The photocycle of bacteriorhodopsin at high pH and ionic strength I. Effects of pH and buffer on the absorption kinetics
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The photocycle of bacteriorhodopsin at high pH and ionic strength I. Effects of pH and buffer on the absorption kinetics

机译:细菌视紫红质在高pH和离子强度下的光循环I. pH和缓冲液对吸收动力学的影响

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摘要

A fitting analysis resolved the kinetics in the microsecond to second time range of the absorption changes in the bacteriorhodopsin photocycle at pH = 8,0-9.5 in 3 M KC1 into seven exponential components. The time constants and/or amplitudes of all components are strongly pH-dependent. In the pH range studied, the logarithms of the pH-dependent time constants varied linearly with pH. The maximum absolute value of the corresponding slopes was 0.4, in contrast with the theoretically expected value of 1 for unidirectional reactions coupled directly to proton exchange with the bulk phase. This indicates that the extracted macroscopic rate constants are not identical to the microscopic rate constants for the elementary photocycle reaction steps. Unexpected differences were found in the kinetic parameters in CHES and borate buffers.
机译:拟合分析将3M KCl中pH = 8.0-9.5的细菌视紫红质光循环在微秒到第二时间范围内的动力学变化分解为七个指数成分。所有成分的时间常数和/或幅度都强烈依赖于pH。在研究的pH范围内,pH依赖的时间常数的对数随pH线性变化。相应斜率的最大绝对值为0.4,这与直接与质子交换与质子交换耦合的单向反应的理论预期值1相反。这表明提取的宏观速率常数与基本光循环反应步骤的微观速率常数不同。在CHES和硼酸盐缓冲液的动力学参数中发现了意外的差异。

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