Suorsa Marjaana, Regel Ralph E, Paakkarinen Virpi, Battchikova Natalia, Herrmann Reinhold G, Aro Eva-Mari
Department of Biology, Plant Physiology and Molecular Biology, University of Turku, Finland.
Eur J Biochem. 2004 Jan;271(1):96-107. doi: 10.1046/j.1432-1033.2003.03906.x.
The protein assembly and stability of photosystem II (PSII) (sub)complexes were studied in mature leaves of four plastid mutants of tobacco (Nicotiana tabacum L), each having one of the psbEFLJ operon genes inactivated. In the absence of psbL, no PSII core dimers or PSII-light harvesting complex (LHCII) supercomplexes were formed, and the assembly of CP43 into PSII core monomers was extremely labile. The assembly of CP43 into PSII core monomers was found to be necessary for the assembly of PsbO on the lumenal side of PSII. The two other oxygen-evolving complex (OEC) proteins, PsbP and PsbQ, were completely lacking in Delta psbL. In the absence of psbJ, both intact PSII core monomers and PSII core dimers harboring the PsbO protein were formed, whereas the LHCII antenna remained detached from the PSII dimers, as demonstrated by 77 K fluorescence measurements and by the lack of PSII-LHCII supercomplexes. The Delta psbJ mutant was characterized by a deficiency of PsbQ and a complete lack of PsbP. Thus, both the PsbL and PsbJ subunits of PSII are essential for proper assembly of the OEC. The absence of psbE and psbF resulted in a complete absence of all central PSII core and OEC proteins. In contrast, very young, vigorously expanding leaves of all psbEFLJ operon mutants accumulated at least traces of D2, CP43 and the OEC proteins PsbO and PsbQ, implying developmental control of the expression of the PSII core and OEC proteins. Despite severe problems in PSII assembly, the thylakoid membrane complexes other than PSII were present and correctly assembled in all psbEFLJ operon mutants.
在烟草(Nicotiana tabacum L)的四个质体突变体的成熟叶片中研究了光系统II(PSII)(亚)复合物的蛋白质组装和稳定性,每个突变体的psbEFLJ操纵子基因之一被灭活。在没有psbL的情况下,未形成PSII核心二聚体或PSII捕光复合物(LHCII)超复合物,并且CP43组装到PSII核心单体中极其不稳定。发现CP43组装到PSII核心单体中对于PsbO在PSII腔侧的组装是必需的。另外两种放氧复合物(OEC)蛋白PsbP和PsbQ在ΔpsbL中完全缺失。在没有psbJ的情况下,形成了完整的PSII核心单体和含有PsbO蛋白的PSII核心二聚体,而LHCII天线仍然与PSII二聚体分离,77K荧光测量和缺乏PSII-LHCII超复合物证明了这一点。ΔpsbJ突变体的特征是PsbQ缺乏和PsbP完全缺失。因此,PSII的PsbL和PsbJ亚基对于OEC的正确组装都是必不可少的。psbE和psbF的缺失导致所有中央PSII核心和OEC蛋白完全缺失。相比之下,所有psbEFLJ操纵子突变体的非常幼嫩、快速生长的叶片至少积累了微量的D2、CP43以及OEC蛋白PsbO和PsbQ,这意味着PSII核心和OEC蛋白的表达受到发育调控。尽管PSII组装存在严重问题,但PSII以外的类囊体膜复合物在所有psbEFLJ操纵子突变体中都存在且组装正确。