Irrgang K D, Boekema E J, Vater J, Renger G
Max-Volmer-Institut für Biophysikalische und Physikalische Chemie, Technische Universität Berlin.
Eur J Biochem. 1988 Dec 1;178(1):209-17. doi: 10.1111/j.1432-1033.1988.tb14445.x.
A photosystem II core complex was purified with high yield from spinach by solubilization with beta-dodecylmaltoside. The complex consisted of polypeptides with molecular mass 47, 43, 34, 31, 9 and 4 kDa and some minor components, as detected by silver-staining of polyacrylamide gels. There was no indication for the chlorophyll-a/b-binding, light-harvesting complex polypeptides. The core complex revealed electron-transfer activity (1,5-diphenylcarbazide----2,6-dichloroindophenol) of about 30 mumol reduced 2,6-dichloroindophenol/mg chlorophyll/h. The structural integrity was analyzed by electron microscopy. The detergent-solubilized protein complex has the shape of a triangular disk with a maximum diameter of 13 nm and a maximum height of 6.8 nm. The shape of this core complex differs considerably from that of cyanobacterial photosystem II membrane fragments, which are elongated particles. The structural differences between both the complexes of higher plants and cyanobacteria are discussed with special emphasis on their association with the antenna apparatus in the photosynthetic membranes.
通过用β-十二烷基麦芽糖苷增溶,从菠菜中高产率地纯化出了光系统II核心复合物。通过聚丙烯酰胺凝胶银染检测,该复合物由分子量为47、43、34、31、9和4 kDa的多肽以及一些次要成分组成。没有迹象表明存在叶绿素a/b结合的捕光复合物多肽。核心复合物显示出约30 μmol还原的2,6-二氯靛酚/毫克叶绿素/小时的电子转移活性(1,5-二苯基卡巴肼→2,6-二氯靛酚)。通过电子显微镜分析了结构完整性。去污剂增溶的蛋白质复合物呈三角形盘状,最大直径为13 nm,最大高度为6.8 nm。这种核心复合物的形状与蓝藻光系统II膜片段的形状有很大不同,后者是细长颗粒。讨论了高等植物和蓝藻两者复合物之间的结构差异,特别强调了它们与光合膜中天线装置的关联。