Bhakdi S, Bjerrum O J, Bhakdi-Lehnen B, Tranum-Jensen J
J Immunol. 1978 Dec;121(6):2526-32.
The terminal, membrane-derived C5b-9 complex of human complement (C) is an apparently hollow, cylindrical macromolecule vertically oriented on the target membrane. In the present study, an antiserum to the complex has been used to probe its immunobiochemical properties. "Neoantigenic" determinants characteristic of the complex have been detected, which are absent on native C5-C9 molecules. Evidence that the C5b-9 complex is an amphiphilic molecule that possesses apolar, detergent-binding surfaces has been obtained by using charge-shift crossed immunoelectrophoresis, and by direct demonstration of Triton X-100 binding to the complex in quantitative immunoelectrophoresis. By the same criteria, serum C5, C6, and C9 are hydrophilic molecules. The results indicate that assembly of C5-C9 into the terminal membrane C5b-9 complex is accompanied by conformational changes in the individual C components that lead to the exposure of apolar molecular regions in the complex. It is proposed that this constitutes the basis for the lipid-binding properties of the macromolecule, which enable it to become inserted into biologic and artificial lipid membranes with apparent generation of a transmembrane pore.
人补体(C)的终末膜源性C5b-9复合物是一种明显中空的圆柱形大分子,垂直定位于靶膜上。在本研究中,已使用针对该复合物的抗血清来探究其免疫生化特性。已检测到该复合物特有的“新抗原性”决定簇,而天然C5-C9分子上不存在这些决定簇。通过使用电荷转移交叉免疫电泳以及在定量免疫电泳中直接证明Triton X-100与该复合物结合,已获得证据表明C5b-9复合物是一种具有非极性、与去污剂结合表面的两亲性分子。按照相同标准,血清C5、C6和C9是亲水性分子。结果表明,C5-C9组装成终末膜C5b-9复合物伴随着各个C成分的构象变化,这些变化导致复合物中非极性分子区域的暴露。有人提出,这构成了该大分子脂质结合特性的基础,使其能够插入生物和人工脂质膜中,并明显形成跨膜孔。