Kargul Joanna, Maghlaoui Karim, Murray James W, Deak Zsuzsanna, Boussac Alain, Rutherford A William, Vass Imre, Barber James
Wolfson Laboratories, Division of Molecular Biosciences, Faculty of Natural Sciences, Imperial College London, London, UK.
Biochim Biophys Acta. 2007 Jun;1767(6):404-13. doi: 10.1016/j.bbabio.2007.01.007. Epub 2007 Jan 19.
The core complex of photosystem II (PSII) was purified from thermophilic cyanobacterium Thermosynechococcus elongatus grown in Sr(2+)-containing and Ca(2+)-free medium. Functional in vivo incorporation of Sr(2+) into the oxygen-evolving complex (OEC) was confirmed by EPR analysis of the isolated and highly purified SrPSII complex in agreement with the previous study of Boussac et al. [J. Biol. Chem. 279 (2004) 22809-22819]. Three-dimensional crystals of SrPSII complex were obtained which diffracted to 3.9 A and belonged to the orthorhombic space group P2(1)2(1)2(1) with unit cell dimensions of a=133.6 A, b=236.6 A, c=307.8 A. Anomalous diffraction data collected at the Sr K-X-ray absorption edge identified a novel Sr(2+)-binding site which, within the resolution of these data (6.5 A), is consistent with the positioning of Ca(2+) in the recent crystallographic models of PSII [Ferreira et al. Science 303 (2004) 1831-1838, Loll et al. Nature 438 (2005) 1040-1044]. Fluorescence measurements on SrPSII crystals confirmed that crystallized SrPSII was active in transferring electrons from the OEC to the acceptor site of the reaction centre. However, SrPSII showed altered functional properties of its modified OEC in comparison with that of the CaPSII counterpart: slowdown of the Q(A)-to-Q(B) electron transfer and stabilized S(2)Q(A)(-) charge recombination.
从生长在含Sr(2+)且无Ca(2+)培养基中的嗜热蓝藻细长聚球藻中纯化出了光系统II(PSII)的核心复合物。通过对分离并高度纯化的SrPSII复合物进行电子顺磁共振(EPR)分析,证实了Sr(2+)在体内功能性地掺入到放氧复合物(OEC)中,这与Boussac等人之前的研究结果一致[《生物化学杂志》279 (2004) 22809 - 22819]。获得了SrPSII复合物的三维晶体,其衍射分辨率达到3.9 Å,属于正交空间群P2(1)2(1)2(1),晶胞参数为a = 133.6 Å,b = 236.6 Å,c = 307.8 Å。在Sr K - X射线吸收边收集的反常衍射数据确定了一个新的Sr(2+)结合位点,在这些数据的分辨率(6.5 Å)范围内,该位点与PSII最近晶体学模型中Ca(2+)的定位一致[费雷拉等人,《科学》303 (2004) 1831 - 1838,洛尔等人,《自然》438 (2005) 1040 - 1044]。对SrPSII晶体的荧光测量证实,结晶的SrPSII在将电子从OEC转移到反应中心的受体位点方面具有活性。然而,与CaPSII对应物相比,SrPSII显示出其修饰的OEC的功能特性发生了改变:Q(A)到Q(B)的电子转移减慢,S(2)Q(A)(-)电荷复合稳定。