Robblee John H, Messinger Johannes, Cinco Roehl M, McFarlane Karen L, Fernandez Carmen, Pizarro Shelly A, Sauer Kenneth, Yachandra Vittal K
Melvin Calvin Laboratory, Physical Biosciences Division, Lawrence Berkeley National Laboratory and Department of Chemistry, University of California, Berkeley, California 94720-5230, USA.
J Am Chem Soc. 2002 Jun 26;124(25):7459-71. doi: 10.1021/ja011621a.
A key component required for an understanding of the mechanism of the evolution of molecular oxygen by the photosynthetic oxygen-evolving complex (OEC) in photosystem II (PS II) is the knowledge of the structures of the Mn cluster in the OEC in each of its intermediate redox states, or S-states. In this paper, we report the first detailed structural characterization using Mn extended X-ray absorption fine structure (EXAFS) spectroscopy of the Mn cluster of the OEC in the S(0) state, which exists immediately after the release of molecular oxygen. On the basis of the EXAFS spectroscopic results, the most likely interpretation is that one of the di-mu-oxo-bridged Mn-Mn moieties in the OEC has increased in distance from 2.7 A in the dark-stable S(1) state to 2.85 A in the S(0) state. Furthermore, curve fitting of the distance heterogeneity present in the EXAFS data from the S(0) state leads to the intriguing possibility that three di-mu-oxo-bridged Mn-Mn moieties may exist in the OEC instead of the two di-mu-oxo-bridged Mn-Mn moieties that are widely used in proposed structural models for the OEC. This possibility is developed using novel structural models for the Mn cluster in the OEC which are consistent with the structural information available from EXAFS and the recent X-ray crystallographic structure of PS II at 3.8 A resolution.
理解光系统II(PS II)中光合放氧复合体(OEC)产生分子氧机制所需的一个关键组成部分,是了解OEC中锰簇在其每个中间氧化还原状态(即S态)下的结构。在本文中,我们报告了首次使用锰扩展X射线吸收精细结构(EXAFS)光谱对OEC处于S(0)态的锰簇进行详细结构表征,S(0)态是在分子氧释放后立即存在的状态。基于EXAFS光谱结果,最有可能的解释是,OEC中一个双μ-氧桥连的Mn-Mn部分的距离从暗稳定的S(1)态的2.7 Å增加到了S(0)态的2.85 Å。此外,对来自S(0)态的EXAFS数据中存在的距离异质性进行曲线拟合,得出了一个有趣的可能性,即OEC中可能存在三个双μ-氧桥连的Mn-Mn部分,而不是在OEC的结构模型中广泛使用的两个双μ-氧桥连的Mn-Mn部分。利用与EXAFS提供的结构信息以及最近分辨率为3.8 Å的PS II X射线晶体结构一致的OEC中锰簇的新型结构模型,探讨了这种可能性。