Plöscher Matthias, Granvogl Bernhard, Zoryan Mikael, Reisinger Veronika, Eichacker Lutz Andreas
Ludwig-Maximilians-Universität, Biozentrum der LMU Biologie, Planegg-Martinsried, Germany.
Proteomics. 2009 Feb;9(3):625-35. doi: 10.1002/pmic.200800337.
In Photosystem II (PSII), a high number of plastid encoded and membrane integral low molecular weight proteins smaller than 10 kDa, the proteins PsbE, F, H, I, J, K, L, M, N, Tc, Z and the nuclear encoded PsbW, X, Y1, Y2 proteins have been described. Here we show that all low molecular weight proteins of PSII already accumulate in the etioplast membrane fraction in darkness, whereas PsaI and PsaJ of photosystem I (PSI) represent the only low molecular weight proteins that do not accumulate in darkness. We found by BN-PAGE separation of membrane protein complexes and selective MS that the accumulation of one-helix proteins from PSII is light independent and occurs in etioplasts. In contrast, in chloroplasts isolated from light-grown plants, low molecular weight proteins were found to specifically accumulate in PSI and II complexes. Our results demonstrate how plants grown in darkness prepare for the induction of chlorophyll dependent photosystem assembly upon light perception. We anticipate that our investigation will provide the essential means for the analysis of protein assembly in any membrane utilizing low molecular weight protein subunits.
在光系统II(PSII)中,有大量由质体编码且整合于膜中的分子量小于10 kDa的低分子量蛋白质,如蛋白质PsbE、F、H、I、J、K、L、M、N、Tc、Z以及由核编码的PsbW、X、Y1、Y2蛋白质。在此我们表明,PSII的所有低分子量蛋白质在黑暗中已在黄化质体膜部分积累,而光系统I(PSI)的PsaI和PsaJ是仅有的在黑暗中不积累的低分子量蛋白质。我们通过膜蛋白复合物的蓝非变性聚丙烯酰胺凝胶电泳(BN-PAGE)分离和选择性质谱分析发现,PSII中单螺旋蛋白质的积累不依赖光照,且发生在黄化质体中。相反,在从光照生长的植物中分离出的叶绿体中,发现低分子量蛋白质特异性地积累在PSI和II复合物中。我们的结果表明了在黑暗中生长的植物如何在感知光照后为诱导依赖叶绿素的光系统组装做准备。我们预计我们的研究将为利用低分子量蛋白质亚基分析任何膜中的蛋白质组装提供必要手段。