Dolder M, Zeth K, Tittmann P, Gross H, Welte W, Wallimann T
Institute of Cell Biology, Institute of Applied Physics, Swiss Federal Institute of Technology, ETH-Hönggerberg, Zürich, CH-8093, Switzerland.
J Struct Biol. 1999 Aug;127(1):64-71. doi: 10.1006/jsbi.1999.4141.
Overexpressed human voltage-dependent anion-selective channel VDAC or porin from mitochondrial outer membranes has been purified to homogeneity. Electron microscopic analysis of VDAC in detergent solution revealed a uniform particle population consisting of porin monomers. After dialysis of detergent-solubilized porin in the presence of dimyristoylphosphatidylcholine at lipid-to-protein ratios between 0.2 and 0.5 (percentage by weight), mostly multilamellar crystals were obtained. Crystals adsorbed to carbon films flattened during negative staining and air-drying and exhibited different structural features due to differences in the vertical stacking of several crystalline layers, each consisting of one membrane bilayer. Adsorbed, frozen-hydrated multilamellar membrane crystals revealed uniform diffraction patterns with sharp diffraction spots extending to 8.2 A. The surface structure of VDAC was reconstructed from freeze-dried and unidirectionally metal-shadowed crystals. Major protein protrusions were observed from two VDAC monomers present in the unit cell. Differences in the surface structural features indicate alternate orientations of VDAC molecules with respect to the lipid bilayer, allowing the simultaneous imaging of both the cytosolic and intramitochondrial surfaces. Each VDAC molecule consists of a pore lumen with a diameter of 17-20 A surrounded by a protein rim of nonuniform height, suggesting an asymmetrical distribution of protein mass around the diffusion channels.
线粒体外膜中过表达的人类电压依赖性阴离子选择性通道VDAC或孔蛋白已被纯化至同质。对去污剂溶液中的VDAC进行电子显微镜分析,发现由孔蛋白单体组成的均匀颗粒群体。在二肉豆蔻酰磷脂酰胆碱存在下,以脂质与蛋白质的比例为0.2至0.5(重量百分比)对去污剂溶解的孔蛋白进行透析后,大多获得多层晶体。吸附在碳膜上的晶体在负染色和空气干燥过程中变平,由于几个晶体层(每个晶体层由一个膜双层组成)垂直堆叠方式的差异而呈现出不同的结构特征。吸附的冷冻水合多层膜晶体显示出均匀的衍射图案,衍射斑点清晰,延伸至8.2埃。通过冷冻干燥和单向金属阴影处理的晶体重建了VDAC的表面结构。在晶胞中存在的两个VDAC单体上观察到主要的蛋白质突起。表面结构特征的差异表明VDAC分子相对于脂质双层的交替取向,从而能够同时对胞质和线粒体内表面进行成像。每个VDAC分子由一个直径为17 - 20埃的孔腔组成,周围是高度不均匀的蛋白质边缘,这表明蛋白质质量在扩散通道周围呈不对称分布。