General Physics Institute of the Academy of Sciences, USSR, 117942 Moscow, Union of Soviet Socialist Republics.
Biophys J. 1992 Apr;61(4):1001-6. doi: 10.1016/s0006-3495(92)81907-0.
The temperature and pH dependencies of the O(640) intermediate of the photocycle of bacteriorhodopsin (bR) were investigated by flash photolysis and T-jump experiments. The maximal concentration of the O(640) intermediate was found to be dependent on the temperature, which is described by a sigmoidal relationship. With increasing pH the midpoint of the sigmoidal curves shifts to higher temperatures. The Van't Hoff equation provides enthalpy and entropy values of the observed states. These results indicate that, in the investigated temperature (0-60 degrees C) and pH (pH 4.0-10.0) range, the sequence of the principal intermediates in the pathway "M-N-O-bR" does not change. The observations of the O(640) intermediate at pH < 8.0 and of the N(550) intermediate at pH > 8.0 are most probably due only to changes of the intrinsic rate constants of the bR photocycle, not to a different mechanism.
用闪光光解和 T-跳跃实验研究了菌紫质(bR)光循环中 O(640) 中间产物的温度和 pH 值依赖性。发现 O(640) 中间产物的最大浓度取决于温度,呈 S 形关系。随着 pH 值的增加,S 形曲线的中点向更高的温度移动。范特霍夫方程提供了观察到的状态的焓和熵值。这些结果表明,在所研究的温度(0-60°C)和 pH 值(pH 值 4.0-10.0)范围内,“M-N-O-bR”途径中主要中间产物的顺序没有改变。在 pH 值<8.0 时观察到 O(640) 中间产物,在 pH 值>8.0 时观察到 N(550) 中间产物,这很可能仅仅是由于 bR 光循环的固有速率常数的变化,而不是由于不同的机制。