Thidholm Ellinor, Lindström Viktoria, Tissier Christophe, Robinson Colin, Schröder Wolfgang P, Funk Christiane
Arrhenius Laboratories for Natural Sciences, Department of Biochemistry and Biophysics, Stockholm University, SE-106 91, Stockholm, Sweden.
FEBS Lett. 2002 Feb 27;513(2-3):217-22. doi: 10.1016/s0014-5793(02)02314-1.
A blue-native gel electrophoresis system was combined with an in organello import assay to specifically analyse the location and assembly of two nuclear-encoded photosystem II (PSII) subunits. With this method we were able to show that initially the low molecular mass PsbW protein is not associated with the monomeric form of PSII. Instead a proportion of newly imported PsbW is directly assembled in dimeric PSII supercomplexes with very fast kinetics; its negatively charged N-terminal domain is essential for this process. The chlorophyll-binding PsbS protein, which is involved in energy dissipation, is first detected in the monomeric PSII subcomplexes, and only at later time points in the dimeric form of PSII. It seems to be bound tighter to the PSII core complex than to light harvesting complex II. These data point to radically different assembly pathways for different PSII subunits.
将蓝色非变性凝胶电泳系统与体外导入分析相结合,以特异性分析两个核编码光系统II(PSII)亚基的定位和组装。通过这种方法,我们能够证明,最初低分子量的PsbW蛋白不与PSII的单体形式相关联。相反,一部分新导入的PsbW以非常快的动力学直接组装到二聚体PSII超复合物中;其带负电荷的N端结构域对该过程至关重要。参与能量耗散的叶绿素结合蛋白PsbS首先在单体PSII亚复合物中被检测到,并且仅在稍后的时间点以PSII的二聚体形式被检测到。它似乎与PSII核心复合物的结合比与捕光复合物II的结合更紧密。这些数据表明不同的PSII亚基具有截然不同的组装途径。