Ivković-Jensen M M, Kostić N M
Department of Chemistry, Iowa State University, Ames, Iowa 50011, USA.
Biochemistry. 1997 Jul 1;36(26):8135-44. doi: 10.1021/bi970327l.
This is a study of the effects of viscosity (in the range of 0.8-790 cP), of temperature (in the range of 260.7-307.7 K), and of ionic strength (in the range of 2.5-20.0 mM) on the kinetics of photoinduced electron-transfer reaction 3Zncyt/pc(II) --> Zncyt+/pc(I) within the electrostatic complex of zinc cytochrome c and cupriplastocyanin at pH 7.0. The unimolecular rate constant is kF. The apparent activation parameters DeltaH*, DeltaS*, and DeltaG* for this reaction were obtained in experiments with aqueous glycerol solutions having a constant composition. The interpolation of kF values obtained at the constant composition into the dependence of kF on temperature at constant viscosity gave the proper activation parameters, which agree with those obtained in experiments with solutions having a constant viscosity. This agreement validates the latter method, which is more efficient than the former, for determining activation parameters of processes that are modulated by viscosity. The smooth change in kF is governed by the change in viscosity, not in other properties of the solvent, and it does not depend on the choice of the viscosigen. Donor/acceptor electronic coupling (HAB) and reorganizational energy (lambda), obtained by fitting of the temperature dependence of kF to the Marcus equation, are consistent with true electron transfer and with electron transfer that is coupled to, or gated by, a preceding structural rearrangement of the diprotein complex 3Zncyt/pc(II). The fact that at very high viscosity kF approaches zero shows that the reaction is probably gated throughout the investigated range of viscosity. Kinetic effects and noneffects of ionic strength, viscosity, and thermodynamic driving force indicate, but do not prove, that the reaction under consideration is gated. The kinetic effect of viscosity is analyzed in terms of two models. Because ln kF is a nonlinear function of ln eta, protein friction has to be considered in the analysis of viscosity effects on kinetics.
这是一项关于粘度(0.8 - 790厘泊范围内)、温度(260.7 - 307.7 K范围内)和离子强度(2.5 - 20.0毫摩尔范围内)对锌细胞色素c和铜质体蓝素在pH 7.0时静电复合物内光诱导电子转移反应3Zncyt/pc(II) --> Zncyt+/pc(I)动力学影响的研究。单分子速率常数为kF。该反应的表观活化参数ΔH*、ΔS和ΔG是在具有恒定组成的甘油水溶液实验中获得的。将在恒定组成下获得的kF值插值到kF对恒定粘度下温度的依赖关系中,得到了合适的活化参数,这与在具有恒定粘度的溶液实验中获得的参数一致。这种一致性验证了后一种方法(比前一种方法更有效)用于确定受粘度调节过程的活化参数的有效性。kF的平滑变化由粘度变化而非溶剂的其他性质决定,并且不依赖于增粘剂的选择。通过将kF的温度依赖性拟合到Marcus方程获得的供体/受体电子耦合(HAB)和重组能(λ)与真实电子转移以及与双蛋白复合物3Zncyt/pc(II)先前结构重排耦合或受其控制的电子转移一致。在非常高的粘度下kF接近零这一事实表明,在所研究的粘度范围内反应可能是受控制的。离子强度、粘度和热力学驱动力的动力学效应和无效应表明(但未证明)所考虑的反应是受控制的。根据两种模型分析了粘度的动力学效应。由于ln kF是ln η的非线性函数,在分析粘度对动力学的影响时必须考虑蛋白质摩擦。