Sarai A
Biochim Biophys Acta. 1980 Jan 4;589(1):71-83. doi: 10.1016/0005-2728(80)90133-4.
Photosynthetic electron transfer is discussed from a theoretical viewpoint. Theoretical description of electron transfer including the effect of low-frequency mode of protein is first discussed briefly. Then typical electron transfers in the primary photosynthesis are discussed as examples for the comparison between the theory and experiments. Attention is focussed on the fact that the photosynthetic system organizes a variety of electron transfers in a systematic manner to achieve a vary efficient energy conversion, and it is suggested that the protein environment plays an important role in controlling the rate of electron transfer and maximizing the efficiency of the primary reaction. We emphasize that not only the electronic but also vibrational interactions are important for the regulation of electron transfer. Some novel processes such as activationless and negative activation transfers are shown to be connected with the significance of vibrational factor.
从理论角度探讨了光合电子转移。首先简要讨论了包括蛋白质低频模式效应在内的电子转移理论描述。然后讨论了初级光合作用中的典型电子转移,作为理论与实验比较的示例。重点关注光合系统以系统方式组织各种电子转移以实现高效能量转换这一事实,并表明蛋白质环境在控制电子转移速率和使初级反应效率最大化方面发挥着重要作用。我们强调,不仅电子相互作用,而且振动相互作用对于电子转移的调节也很重要。一些新颖的过程,如无活化和负活化转移,被证明与振动因素的重要性有关。