Tschopp J
J Biol Chem. 1984 Aug 25;259(16):10569-73.
The ninth component of complement (C9) polymerizes to tubules either spontaneously at a very slow rate (3 days at 37 degrees C) or within minutes if induced by C5b-8 as part of the membrane attack assembly (Tschopp, J., Podack, E. R., and Müller-Eberhard, H. J. (1984) J. Immunol., in press). The spontaneous formation of tubular sodium dodecyl sulfate-resistant C9 polymers was completely inhibited in the presence of 1 mM EDTA. In contrast, the presence of Cu2+, Zn2+, and Cd2+ accelerated C9 polymerization. Zn2+ was the most efficient metal ion. At a molar ratio of one Zn2+ per monomeric C9, all C9 polymerized within 2 h. At Zn2+ concentrations above 10(-3) M, tubular C9 formation was inhibited due to nonspecific aggregation of C9. It is concluded that the presence of metal ions is required for the formation of tubular poly C9 and that Zn2+ in particular catalyzes C9 polymerization.
补体第九成分(C9)可自发聚合成小管,速率非常缓慢(37℃时需3天),但若由作为膜攻击复合体一部分的C5b-8诱导,则可在数分钟内完成(乔普,J.,波达克,E.R.,以及米勒-埃伯哈德,H.J.(1984年)《免疫学杂志》,即将发表)。在1 mM乙二胺四乙酸(EDTA)存在的情况下,耐十二烷基硫酸钠的管状C9聚合物的自发形成被完全抑制。相反,Cu2+、Zn2+和Cd2+的存在加速了C9聚合。Zn2+是最有效的金属离子。在每个单体C9与一个Zn2+的摩尔比下,所有C9在2小时内聚合。当Zn2+浓度高于10(-3) M时,由于C9的非特异性聚集,管状C9的形成受到抑制。得出的结论是,金属离子的存在是形成管状多聚C9所必需的,特别是Zn2+催化C9聚合。