Büchel C, Morris E, Barber J
Wolfson Laboratories, Imperial College of Science, Technology and Medicine, London SW7 2AY, United Kingdom.
J Struct Biol. 2000 Sep;131(3):181-6. doi: 10.1006/jsbi.2000.4294.
Microcrystals of the chlorophyll binding protein, CP43, isolated from spinach thylakoid membranes have been studied by electron microscopy both in negative stain and in vitreous ice. Image analyses of three characteristic views show that the crystals are built of five different layers perpendicular to the c-axis. Each layer consists of different orientations of the CP43 protein. The unit cell derived from the end-on view (looking down the c-axis) shows an angle of 120 degrees, suggesting a threefold rotational symmetry. Both negative staining and cryo data are consistent with a hexagonal crystal lattice. Interpretation of the arrangement of the CP43 protein within this crystal lattice can be made based on 8- and 9-A electron crystallographic structures previously published that provide a model for the organisation of the transmembrane helices of CP43. Overall the analysis presented is consistent with X-ray diffraction data obtained from larger CP43 crystals and forms a framework on which to base further structural studies of this chlorophyll binding protein.
从菠菜类囊体膜中分离出的叶绿素结合蛋白CP43的微晶,已通过电子显微镜在负染色和玻璃体冰中进行了研究。对三个特征视图的图像分析表明,这些晶体由垂直于c轴的五个不同层构成。每层由CP43蛋白的不同取向组成。从端视图(沿c轴向下看)得出的晶胞显示出120度的角度,表明具有三重旋转对称性。负染色和冷冻数据均与六方晶格一致。可以基于先前发表的8埃和9埃电子晶体学结构对该晶格内CP43蛋白的排列进行解释,这些结构为CP43跨膜螺旋的组织提供了模型。总体而言,所呈现的分析与从较大CP43晶体获得的X射线衍射数据一致,并形成了一个框架,在此基础上可以对这种叶绿素结合蛋白进行进一步的结构研究。