Jones Michael R
Department of Biochemistry, School of Medical Sciences, University of Bristol, University Walk, Bristol, UK.
Biochem Soc Trans. 2009 Apr;37(Pt 2):400-7. doi: 10.1042/BST0370400.
Photoreaction centres are Nature's solar batteries. These nanometre-scale power producers are responsible for transducing the energy of sunlight into a form that can be used by biological systems, thereby powering most of the biological activity on the planet. Although to the layman the word 'photosynthesis' is usually associated with green plants, much of our understanding of the molecular basis of biological transduction of light energy has come from studies of purple photosynthetic bacteria. Their RCs (reaction centres) and attendant light-harvesting complexes have been subjected to an intensive spectroscopic scrutiny, coupled with genetic manipulation and structural studies, that has revealed many of the molecular and mechanistic details of biological energy transfer, electron transfer and coupled proton translocation. This review provides a short overview of the structure and mechanism of the purple bacterial RC, focusing in the main on the most heavily studied complex from Rhodobacter sphaeroides.
光反应中心是自然界的太阳能电池。这些纳米级的能量产生器负责将太阳光的能量转化为生物系统能够利用的形式,从而为地球上的大部分生物活动提供能量。尽管在外行人看来,“光合作用”这个词通常与绿色植物相关,但我们对光能生物转化分子基础的许多理解都来自对紫色光合细菌的研究。它们的反应中心(RC)以及相关的光捕获复合物受到了深入的光谱学研究,同时结合了基因操作和结构研究,这些研究揭示了生物能量转移、电子转移和耦合质子转运的许多分子和机制细节。本综述简要概述了紫色细菌反应中心的结构和机制,主要聚焦于来自球形红杆菌研究最为深入的复合物。