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人类补体功能性膜攻击复合物的组装:二硫键连接的C9二聚体的形成。

Assembly of the functional membrane attack complex of human complement: formation of disulfide-linked C9 dimers.

作者信息

Ware C F, Kolb W P

出版信息

Proc Natl Acad Sci U S A. 1981 Oct;78(10):6426-30. doi: 10.1073/pnas.78.10.6426.

Abstract

The 158,000 Mr protein, previously designated C5c, present in fully assembled complement (C) membrane attack complexes (MC5b-9) has been identified as a disulfide-bonded dimer of C9. This conclusion was based on the observations that: (i) a portion of the 125I-radiolabeled precursor C9 incorporated into MC5b-9 complexes comigrated with the 158,000 Mr protein band in NaDodSO4/polyacrylamide slab gels; (ii) monospecific antisera produced against native C9 and the 158,000 Mr protein immunologically crossreacted with monomeric native C9 by double immunodiffusion and with monomeric C9 and the 158,000 Mr protein on immunoreplication procedures; and (iii) two-dimensional NaDodSO4/polyacrylamide slab gel electrophoresis, in which the second dimension was conducted under reducing conditions, revealed that the 158,000 Mr protein contained two identical 71,000 Mr subunits which comigrated with monomeric C9. Molar ratio estimates indicated that 1 mol of C5b, C9 dimer, C6, C7, and C8 and 3-4 mol of C9 monomer were present per MC5b-9 complex. Each fully assembled membrane-bound MC5b-9 complex would therefore have a calculated Mr of 982,000. The presence of C9 dimers in the hemolytically active 29S dimeric form of the MC5b-9 complex and the absence of C9 dimers in the hemolytically inactive 23S monomeric form of the fluid phase SC5b-9 complex strongly suggest an important role for C9 dimer formation in MC5b-9 complex structure and function. The most probable function of C9 dimers would be the formation of intercomplex disulfide crosslinks which would provide a mechanism to stabilize the assembly of MC5b-9 into aggregates of increasing size on the target membrane surface which would thus be responsible for the observed pore size heterogeneity of functional C lesions.

摘要

存在于完全组装的补体(C)膜攻击复合物(MC5b - 9)中的158,000 Mr蛋白质,先前被指定为C5c,已被鉴定为C9的二硫键结合二聚体。这一结论基于以下观察结果:(i)掺入MC5b - 9复合物中的一部分125I放射性标记的前体C9在NaDodSO4/聚丙烯酰胺平板凝胶中与158,000 Mr蛋白质条带共迁移;(ii)针对天然C9和158,000 Mr蛋白质产生的单特异性抗血清,通过双向免疫扩散与单体天然C9发生免疫交叉反应,在免疫印迹程序中与单体C9和158,000 Mr蛋白质发生免疫交叉反应;(iii)二维NaDodSO4/聚丙烯酰胺平板凝胶电泳,其中第二维在还原条件下进行,结果显示158,000 Mr蛋白质包含两个与单体C9共迁移的相同的71,000 Mr亚基。摩尔比估计表明,每个MC5b - 9复合物中存在1摩尔的C5b、C9二聚体、C6、C7和C8以及3 - 4摩尔的C9单体。因此,每个完全组装的膜结合MC5b - 9复合物的计算Mr为982,000。在MC5b - 9复合物具有溶血活性的29S二聚体形式中存在C9二聚体,而在液相SC5b - 9复合物无溶血活性的23S单体形式中不存在C9二聚体,这强烈表明C9二聚体的形成在MC5b - 9复合物的结构和功能中起重要作用。C9二聚体最可能的功能是形成复合物间的二硫键交联,这将提供一种机制来稳定MC5b - 9在靶膜表面组装成越来越大的聚集体,从而导致观察到的功能性C损伤的孔径异质性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8ea4/349052/d53cb7b539d2/pnas00661-0532-a.jpg

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