Division of Biological Sciences, The University of Michigan, 48109-1048, Ann Arbor, MI, USA.
Photosynth Res. 1986 Jan;9(1-2):125-34. doi: 10.1007/BF00029738.
Cytochrome b559 in various Photosystem II preparations was studled by using low temperature ESR spectroscopy. This technique was used because it is able to distinguish high from low potential forms of the cytochrome owing to the g-value differences between these species. Moreover, by using low temperature irradiation to oxidize cyt b559 we have avoided the use of redox mediators. Previous work (Ghanotakis DF., Topper J.N. and Yocum, C.F. (1984) Biochim. Biophys. Acta 767, 524-531) demonstrated that reduction and extraction of manganese of the oxygen evolving complex, which might be expected to alter the redox properties of cyt b559, occurs when certain PSII preparations are exposed to reductants. The ESR data presented here show that a mixture of high potential and lower potential cyt b559 species is observed in the oxygen evolving Photosystem II complex. Treatment of PSII membranes with 0.8 M Tris converts the high potential form(s) to those of lower potential. Exposure of the membranes to 2M NaCl shifts a significant amount of high potential cyt b559 to lower potential form(s); addition of CaCl2 reconstituted oxygen evolution activity but did not restore cyt b559 to its high potential form(s).
使用低温电子自旋共振光谱法研究了各种光系统 II 制剂中的细胞色素 b559。之所以使用这种技术,是因为由于这些物种之间的 g 值差异,它能够区分细胞色素的高电位和低电位形式。此外,通过使用低温辐照氧化 cyt b559,我们避免了使用氧化还原介体。先前的工作(Ghanotakis DF.,Topper JN 和 Yocum,CF.(1984)生物化学。生物物理。学报 767,524-531)表明,当某些 PSII 制剂暴露于还原剂时,会发生锰的还原和氧气释放复合物的提取,这可能会改变 cyt b559 的氧化还原性质。这里呈现的 ESR 数据表明,在氧气释放光系统 II 复合物中观察到高电位和低电位 cyt b559 物种的混合物。用 0.8 M Tris 处理 PSII 膜将高电位形式转化为低电位形式。将膜暴露于 2M NaCl 会将大量高电位 cyt b559 转移到低电位形式;添加 CaCl2 重建了氧气释放活性,但没有将 cyt b559 恢复到其高电位形式。