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天然人补体C9上的几个表位参与与C5b-8复合物及其他C9分子的相互作用。

Several epitopes on native human complement C9 are involved in interaction with the C5b-8 complex and other C9 molecules.

作者信息

Kontermann R, Deppisch R, Rauterberg E W

机构信息

Institut für Immunologie, Universität Heidelberg, FRG.

出版信息

Eur J Immunol. 1990 Mar;20(3):623-8. doi: 10.1002/eji.1830200324.

Abstract

Ten monoclonal antibodies (mAb) against native human C9 exhibiting various inhibitory effects on the hemolytic activity of C9 (Bausback, J., Kontermann, R. and Rauterberg, E. W., Immunobiology 1988. 178: 58) were further analyzed regarding their reactivities with monomeric C9 (mC9), polymerized C9 (pC9), and the non-lytic SC5b-9 complex in enzyme-linked immunosorbent assay and with the membrane attack complex (MAC) generated on rabbit erythrocytes analyzed by flow cytometry. In addition, the inhibitory effects of mAb on zinc-induced C9 polymerization were investigated. One epitope of the C-terminal half of C9b exposed on the surface of pC9 and the MAC seems not to participate directly in lytic function or polymerization since no inhibitory effect of the respective mAb was observed. The nine other mAb directed against epitopes of the C9a part exhibit various inhibitory potentials. The mAb inhibit either hemolysis or polymerization, or both processes. Due to the reactivity with the tested antigens the mAb can be divided into two groups. mAb of the first group bind with nearly the same affinity to all four antigens, whereas mAb of the second group react preferentially with mC9 while their affinity to pC9, SC5b-9 and the MAC is reduced. Comparison of reaction patterns and inhibitory effects strongly suggest that different epitopes on the surface of native C9 are involved in interaction of C9 with C5b-8 and/or in C9-C9 interaction. The finding that mAb inhibiting polymerization of C9 in vitro have no inhibitory effect on hemolysis confirms that C9 polymers are no prerequisite for lysis.

摘要

针对天然人C9的十种单克隆抗体(mAb)对C9的溶血活性表现出不同的抑制作用(Bausback, J., Kontermann, R.和Rauterberg, E. W.,《免疫生物学》1988年。178:58),通过酶联免疫吸附测定进一步分析了它们与单体C9(mC9)、聚合C9(pC9)和非裂解性SC5b-9复合物的反应性,并通过流式细胞术分析了它们与兔红细胞上产生的膜攻击复合物(MAC)的反应性。此外,还研究了单克隆抗体对锌诱导的C9聚合的抑制作用。暴露于pC9和MAC表面的C9b C末端一半的一个表位似乎不直接参与裂解功能或聚合,因为未观察到相应单克隆抗体的抑制作用。针对C9a部分表位的其他九种单克隆抗体表现出不同的抑制潜力。这些单克隆抗体要么抑制溶血,要么抑制聚合,或者两者都抑制。根据与测试抗原的反应性,单克隆抗体可分为两组。第一组单克隆抗体以几乎相同的亲和力与所有四种抗原结合,而第二组单克隆抗体优先与mC9反应,而它们对pC9、SC5b-9和MAC的亲和力降低。反应模式和抑制作用的比较强烈表明,天然C9表面的不同表位参与了C9与C5b-8的相互作用和/或C9-C9相互作用。在体外抑制C9聚合的单克隆抗体对溶血没有抑制作用这一发现证实,C9聚合物不是裂解的先决条件。

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