Institute of Molecular Biophysics, Florida State University, 32306-3015, Tallahassee, Florida, USA.
Photosynth Res. 1988 Mar;15(3):205-20. doi: 10.1007/BF00047353.
Photosystem II membranes prepared from thylakoids of Phytolacca americana chloroplasts were depleted of their intrinsic 17 and 23 kDa polypeptides, and the effects of a reconstitution of these polypeptides on the Cl(-) requirements of O2 evolution activity were analyzed. It was found that the activating effectiveness of limiting amounts of added Cl(-) was increased several fold by an addition of the 23 kDa polypeptide. When it was supplemented by the 17 kDa species, only a small additional increase occurred, but Cl(-) retention in Cl(-) free media was enhanced greatly. Addition of the 17 kDa polypeptide alone was without effect because it is known that it cannot bind to its native site unless the 23 kDa polypeptide is in place.Optimal enhancements of the effectiveness of activating added Cl(-) were observed when the assays were done in the presence of the reconstituting polypeptides. When the reconstituting treatment with the polypeptides, and the assay of the Cl(-) relations, were separated, it was advantageous to have Cl(-) present in the reconstituting medium, and not to add Ca(2+), another cofactor of photosynthetic water oxidation. Those requirements are attributed to the labilizing effects Cl(-) free conditions and divalent cations have on the association of especially the 23 kDa polypeptides with the water oxidizing complex, and to a possible aggregation of the membranes under the influence of Ca(2+) which might have impeded proper polypeptide binding.
从紫萍叶绿体类囊体中制备的光系统 II 膜耗尽了其内在的 17 和 23 kDa 多肽,分析了这些多肽的重新构成对 O2 释放活性的 Cl(-)需求的影响。结果发现,添加的 Cl(-)的激活效果增加了几倍通过添加 23 kDa 多肽。当它被 17 kDa 物种补充时,只发生了很小的额外增加,但 Cl(-)在无 Cl(-)介质中的保留大大增强。单独添加 17 kDa 多肽没有效果,因为已知它不能结合其天然位点,除非存在 23 kDa 多肽。当在重新构成多肽存在下进行测定时,观察到添加 Cl(-)的效果的最佳增强。当将多肽进行重新构成处理并测定 Cl(-)关系时,在重新构成介质中存在 Cl(-)并且不添加 Ca(2+)(光合作用水氧化的另一种辅助因子)是有利的。这些要求归因于无 Cl(-)条件和二价阳离子对特别是 23 kDa 多肽与水氧化复合物的缔合的不稳定影响,以及 Ca(2+)对膜的可能聚集的影响,这可能阻碍了适当的多肽结合。