Mamedov Fikret, Nowaczyk Marc M, Thapper Anders, Rögner Matthias, Styring Stenbjörn
Molecular Biomimetics, Department of Photochemistry and Molecular Science, Angström Laboratory, Uppsala University, SE-751 20 Uppsala, Sweden.
Biochemistry. 2007 May 8;46(18):5542-51. doi: 10.1021/bi7000399. Epub 2007 Apr 14.
Two monomeric fractions of photosystem II (PS II) core pacticles from the thermophilic cyanobacterium Thermosynechococcus elongatus have been investigated using flash-induced variable fluorescence kinetics and EPR spectroscopy. One fraction was highly active in oxygen evolution and contained the extrinsic protein subunits PsbO, PsbU, and PsbV. The other monomeric fraction lacked oxygen evolving activity as well as the three extrinsic subunits, but the luminally located, extrinsic Psb27 lipoprotein was present. In the monomeric fraction with bound Psb27, flash-induced variable fluorescence showed an absence of oxidizable Mn on the donor side of PS II and impaired forward electron transfer from the primary quinone acceptor, QA. These results were confirmed with EPR spectroscopy by the absence of the "split S1" interaction signal from YZ* and the CaMn4 cluster and by the absence of the S2-state multiline signal. A different protein composition on the donor side of PS II monomers with Psb27 was also supported by the lack of an EPR signal from cytochrome c550 (in the PsbV subunit). In addition, we did not observe any oxidation of cytochrome b559 at low temperature in this fraction. The presence of Psb27 and the absence of the CaMn4 cluster did not affect the protein matrix around YD or the acceptor side quinones as can be judged from the appearance of the corresponding EPR signals. The diminished electron transport capabilities on both the donor and the acceptor side of PS II when Psb27 is present give further indications that this PS II complex is involved in the earlier steps of the PS II repair cycle.
利用闪光诱导可变荧光动力学和电子顺磁共振光谱(EPR光谱),对嗜热蓝藻嗜热栖热放线菌光系统II(PS II)核心颗粒的两个单体组分进行了研究。其中一个组分在放氧方面具有高活性,并且包含外在蛋白亚基PsbO、PsbU和PsbV。另一个单体组分缺乏放氧活性以及这三个外在亚基,但存在位于腔侧的外在Psb27脂蛋白。在结合有Psb27的单体组分中,闪光诱导可变荧光显示PS II供体侧不存在可氧化的锰,并且从初级醌受体QA的正向电子转移受损。通过EPR光谱,YZ*和CaMn4簇不存在“分裂S1”相互作用信号以及不存在S2态多线信号,证实了这些结果。PS II单体供体侧具有不同的蛋白质组成,这一点也得到了细胞色素c550(在PsbV亚基中)不存在EPR信号的支持。此外,在该组分中,我们在低温下未观察到细胞色素b559的任何氧化。从相应EPR信号的出现可以判断,Psb27的存在和CaMn4簇的不存在不会影响YD周围的蛋白质基质或受体侧醌。当存在Psb27时,PS II供体侧和受体侧电子传输能力的降低进一步表明,这种PS II复合物参与了PS II修复循环的早期步骤。