Garbers A, Reifarth F, Kurreck J, Renger G, Parak F
Physik Department, Technische Universität München, Garching, Germany.
Biochemistry. 1998 Aug 18;37(33):11399-404. doi: 10.1021/bi980296+.
To analyze a possible correlation between the extent of QA-* reoxidation and protein dynamics, fluorometric and Mössbauer spectroscopic measurements were performed in photosystem II membrane fragments from spinach. Numerical evaluation of the flash-induced change of the normalized fluorescence quantum yield revealed that the extent of reoxidation starts to decrease below 275 K and is almost completely suppressed at 230 K. Detailed analyses of Mössbauer spectra measured at different temperatures in 57Fe-enriched material indicate that the onset of fluctuations between conformational substates of the protein matrix occurs also at around 230 K. Based on this correspondence, protein flexibility is inferred to play a key role for QA-* reoxidation in photosystem II. Taking into account the striking similarities with purple bacteria and the latest structural information on these reaction centers [Stowell, M. H. B., McPhillips, T. M., Rees, D. C., Soltis, S. M., Abresch, E., and Feher, G. (1997) Science 276, 812-816], it appears most plausible that also the headgroup of plastoquinone-9 bound to the QB-site in PSII requires a structural reorientation for its reduction to the semiquinone.
为了分析QA - *再氧化程度与蛋白质动力学之间的可能相关性,对菠菜光系统II膜片段进行了荧光和穆斯堡尔光谱测量。对闪光诱导的归一化荧光量子产率变化进行数值评估表明,再氧化程度在275 K以下开始降低,在230 K时几乎完全受到抑制。对在富含57Fe的材料中不同温度下测量的穆斯堡尔光谱进行详细分析表明,蛋白质基质构象亚态之间波动的起始温度也在230 K左右。基于这种对应关系,推断蛋白质柔韧性在光系统II的QA - *再氧化中起关键作用。考虑到与紫色细菌的显著相似性以及这些反应中心的最新结构信息[斯托韦尔,M. H. B.,麦克菲利普斯,T. M.,里斯,D. C.,索尔蒂斯,S. M.,阿布雷施,E.,和费赫尔,G.(1997年)《科学》276,812 - 816],似乎最合理的是,结合在PSII的QB位点上的质体醌-9的头部基团在还原为半醌时也需要结构重排。