Pushkar Yulia, Yano Junko, Glatzel Pieter, Messinger Johannes, Lewis Azul, Sauer Kenneth, Bergmann Uwe, Yachandra Vittal
Melvin Calvin Laboratory, Physical Biosciences Division, Lawrence Berkeley National Laboratory, Berkeley, California 94720-5230, USA.
J Biol Chem. 2007 Mar 9;282(10):7198-208. doi: 10.1074/jbc.M610505200. Epub 2006 Dec 26.
X-ray absorption spectroscopy has provided important insights into the structure and function of the Mn(4)Ca cluster in the oxygen-evolving complex of Photosystem II (PS II). The range of manganese extended x-ray absorption fine structure data collected from PS II until now has been, however, limited by the presence of iron in PS II. Using a crystal spectrometer with high energy resolution to detect solely the manganese Kalpha fluorescence, we are able to extend the extended x-ray absorption fine structure range beyond the onset of the iron absorption edge. This results in improvement in resolution of the manganese-backscatterer distances in PS II from 0.14 to 0.09A(.) The high resolution data obtained from oriented spinach PS II membranes in the S(1) state show that there are three di-mu-oxo-bridged manganese-manganese distances of approximately 2.7 and approximately 2.8A in a 2:1 ratio and that these three manganese-manganese vectors are aligned at an average orientation of approximately 60 degrees relative to the membrane normal. Furthermore, we are able to observe the separation of the Fourier peaks corresponding to the approximately 3.2A manganese-manganese and the approximately 3.4A manganese-calcium interactions in oriented PS II samples and determine their orientation relative to the membrane normal. The average of the manganese-calcium vectors at approximately 3.4A is aligned along the membrane normal, while the approximately 3.2A manganese-manganese vector is oriented near the membrane plane. A comparison of this structural information with the proposed Mn(4)Ca cluster models based on spectroscopic and diffraction data provides input for refining and selecting among these models.
X射线吸收光谱法为深入了解光系统II(PS II)放氧复合体中Mn(4)Ca簇的结构和功能提供了重要线索。然而,迄今为止从PS II收集的锰扩展X射线吸收精细结构数据的范围受到PS II中铁的存在的限制。使用具有高能量分辨率的晶体光谱仪仅检测锰Kα荧光,我们能够将扩展X射线吸收精细结构范围扩展到铁吸收边起始点之外。这使得PS II中锰-背散射体距离的分辨率从0.14 Å提高到0.09 Å。从处于S(1)状态的定向菠菜PS II膜获得的高分辨率数据表明,存在三个双μ-氧桥连的锰-锰距离,分别约为2.7 Å和2.8 Å,比例为2:1,并且这三个锰-锰向量相对于膜法线的平均取向约为60度。此外,我们能够在定向PS II样品中观察到对应于约3.2 Å锰-锰和约3.4 Å锰-钙相互作用的傅里叶峰的分离,并确定它们相对于膜法线的取向。约3.4 Å处的锰-钙向量的平均值沿膜法线排列,而约3.2 Å处的锰-锰向量靠近膜平面取向。将此结构信息与基于光谱和衍射数据提出的Mn(4)Ca簇模型进行比较,为这些模型的完善和选择提供了依据。