A.N. Belozersky Institute of Physical-Chemical Biology, Moscow State University, 119992 Moscow, Leninskie Gory, Russia.
J Photochem Photobiol B. 2011 Jul-Aug;104(1-2):326-32. doi: 10.1016/j.jphotobiol.2011.02.004. Epub 2011 Feb 26.
This mini review presents a general comparison of structural and functional peculiarities of three types of photosynthetic reaction centers (RCs)--photosystem (PS) II, RC from purple bacteria (bRC) and PS I. The nature and mechanisms of the primary electron transfer reactions, as well as specific features of the charge transfer reactions at the donor and acceptor sides of RCs are considered. Comparison of photosynthetic RCs shows general similarity between the core central parts of all three types, between the acceptor sides of bRC and PS II, and between the donor sides of bRC and PS I. In the latter case, the similarity covers thermodynamic, kinetic and dielectric properties, which determine the resemblance of mechanisms of electrogenic reduction of the photooxidized primary donors. Significant distinctions between the donor and acceptor sides of PS I and PS II are also discussed. The results recently obtained in our laboratory indicate in favor of the following sequence of the primary and secondary electron transfer reactions: in PS II (bRC): Р(680)(Р(870)) → Chl(D1)(В(А)) → Phe(bPhe) → Q(A); and in PS I: Р(700) → А(0А)/A(0B) → Q(A)/Q(B).
这篇迷你综述对三种类型的光合反应中心(RC)——光合系统(PS)II、来自紫色细菌的 RC(bRC)和 PS I——的结构和功能特性进行了一般性比较。考虑了初级电子转移反应的性质和机制,以及 RC 的供体和受体侧的电荷转移反应的特征。光合 RC 的比较表明,所有三种类型的 RC 的核心中央部分之间、bRC 和 PS II 的受体侧之间以及 bRC 和 PS I 的供体侧之间存在普遍相似性。在后一种情况下,相似性涵盖了热力学、动力学和介电特性,这些特性决定了光氧化初级供体的电生成还原机制的相似性。还讨论了 PS I 和 PS II 的供体和受体侧之间的显著区别。我们实验室最近获得的结果表明,以下是初级和次级电子转移反应的顺序:在 PS II(bRC)中:P(680)(P(870))→Chl(D1)(B(А))→Phe(bPhe)→Q(A);而在 PS I 中:P(700)→A(0A)/A(0B)→Q(A)/Q(B)。