Bhakdi S, Tranum-Jensen J
J Cell Biol. 1982 Sep;94(3):755-9. doi: 10.1083/jcb.94.3.755.
The membrane-damaging C5b-9(m) complex of complement is a cylindrically structured, amphiphilic molecule that is generated on a target membrane during complement attack. Isolated C5b-9(m) complexes are shown here to possess the capacity of binding a protein, termed "S"-protein, that is present in human plasma. Binding of this protein apparently shields the apolar surfaces of C5b-9(m), since the resulting "SC5b-9(m)" complex is hydrophilic and no longer aggregates in detergentfree solution. Dispersed SC5b-9(m) complexes exhibit an apparent sedimentation coefficient of 29S in sucrose density gradients, corresponding to a molecular weight of approximately 1.4 million. SDS PAGE analyses indicate binding of 3-4 molecules of S-protein per C5b-9(m) complex. These data are consistent with a monomer nature and molecular weight of 1-1.1 million of the C5b-9(m) complex. Ultrastructural analysis of SC5b-9(m) shows preservation of the hollow cylindrical C5b-9(m) structure. Additional material, probably representing the S-protein itself, can be visualized attached to the originally membrane-embedded portion of the macromolecule. The topography of apolar surfaces on a molecule thus appears directly probed and visualized through the binding of a serum protein.
补体的膜损伤性C5b-9(m)复合物是一种呈圆柱形结构的两亲性分子,在补体攻击过程中在靶膜上生成。本文显示,分离出的C5b-9(m)复合物具有结合一种存在于人体血浆中的名为“S”蛋白的蛋白质的能力。这种蛋白质的结合显然屏蔽了C5b-9(m)的非极性表面,因为形成的“SC5b-9(m)”复合物具有亲水性,且在无洗涤剂溶液中不再聚集。分散的SC5b-9(m)复合物在蔗糖密度梯度中的表观沉降系数为29S,对应分子量约为140万。SDS-PAGE分析表明,每个C5b-9(m)复合物结合3 - 4个S蛋白分子。这些数据与C5b-9(m)复合物的单体性质和100万 - 110万的分子量一致。对SC5b-9(m)的超微结构分析显示,中空圆柱形的C5b-9(m)结构得以保留。可以看到附着在大分子最初嵌入膜部分的额外物质,可能代表S蛋白本身。因此,通过血清蛋白的结合,分子上非极性表面的拓扑结构似乎可以直接被探测和可视化。