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人类补体调节蛋白CD59与C8的α链和C9的“b”结构域结合。

The human complement regulatory protein CD59 binds to the alpha-chain of C8 and to the "b"domain of C9.

作者信息

Ninomiya H, Sims P J

机构信息

Oklahoma Medical Research Foundation, Oklahoma City 73104.

出版信息

J Biol Chem. 1992 Jul 5;267(19):13675-80.

PMID:1377690
Abstract

The erythrocyte membrane inhibitor of the human terminal complement proteins, surface antigen CD59, has previously been shown to enter into a detergent-resistant complex with either the membrane-bound complex of C5b-8 or C5b-9 (Meri, S., Morgan, B. P., Davies, A., Daniels, R. H., Olavesen, M. G., Waldmann, H. and Lachmann, P. J. (1990) Immunology 71, 1-9; Rollins, S. A., Zhao, J., Ninomiya, H., and Sims, P. J. (1991) J. Immunol, 146, 2345-2351). In order to further define the interactions that underlie the complement-inhibitory function of CD59, we have examined the binding interactions between 125I-CD59 and the isolated components of human complement membrane attack complex, C5b6, C7, C8, and C9. By density gradient analysis, we were unable to detect interaction of 125I-CD59 with any of these isolated complement components in solution. Specific binding of 125I-CD59 to C8 and C9 was detected when these human complement proteins were adsorbed to either plastic or to nitrocellulose, suggesting that a conformational change that accompanies surface adsorption exposes a CD59-binding site that is normally buried in these serum proteins. The binding of 125I-CD59 to plastic-adsorbed C8 and C9 was saturable and competed by excess unlabeled CD59, with half-maximal binding observed at 125I-CD59 concentrations of 80 and 36 nM, respectively. No specific binding of 125I-CD59 was detected for surface-adsorbed human C5b6 or C7 nor was such binding observed for C8 or C9 isolated from rabbit serum. Binding of CD59 to human C8 and C9 was not mediated by the phospholipid moiety of CD59, implying association by protein-protein interaction. In order to further define the binding sites for CD59, ligand blotting with 125I-CD59 was performed after separation of C8 into its noncovalently associated subunits (C8 alpha-gamma and C8 beta) and after alpha-thrombin digestion of C9. These experiments revealed specific and saturable binding of 125I-CD59 to C8 alpha-gamma subunit (half-maximal binding at 75 nM), but not to C8 beta, and specific and saturable binding to the 37-kDa fragment (C9b) of thrombin-cleaved C9 (half-maximal binding at 35 nM), but not to the 25-kDa C9a fragment. Partial reduction of C8 alpha-gamma revealed that only C8 alpha polypeptide exhibited affinity for CD59, and no specific binding to the C8 gamma chain was detected.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

人末端补体蛋白的红细胞膜抑制剂,即表面抗原CD59,此前已被证明可与膜结合的C5b-8或C5b-9复合物形成耐去污剂复合物(梅里,S.,摩根,B.P.,戴维斯,A.,丹尼尔斯,R.H.,奥拉维森,M.G.,瓦尔德曼,H.和拉赫曼,P.J.(1990年)《免疫学》71卷,1 - 9页;罗林斯,S.A.,赵,J.,二宫,H.和西姆斯,P.J.(1991年)《免疫学杂志》146卷,2345 - 2351页)。为了进一步明确构成CD59补体抑制功能基础的相互作用,我们研究了125I - CD59与人补体膜攻击复合物的分离成分C5b6、C7、C8和C9之间的结合相互作用。通过密度梯度分析,我们未能检测到溶液中125I - CD59与这些分离的补体成分之间的相互作用。当这些人补体蛋白吸附到塑料或硝酸纤维素上时,检测到125I - CD59与C8和C9的特异性结合,这表明表面吸附伴随的构象变化暴露了通常埋藏在这些血清蛋白中的CD59结合位点。125I - CD59与塑料吸附的C8和C9的结合是可饱和的,并被过量未标记的CD59竞争,分别在125I - CD59浓度为80和36 nM时观察到半数最大结合。未检测到125I - CD59与表面吸附的人C5b6或C7的特异性结合,从兔血清中分离的C8或C9也未观察到这种结合。CD59与人C8和C9的结合不是由CD59的磷脂部分介导的,这意味着是通过蛋白质 - 蛋白质相互作用结合的。为了进一步明确CD59的结合位点,在将C8分离成其非共价结合的亚基(C8α - γ和C8β)以及对C9进行α - 凝血酶消化后,用125I - CD59进行配体印迹分析。这些实验揭示了125I - CD59与C8α - γ亚基的特异性和可饱和结合(半数最大结合在75 nM),但与C8β无结合,以及与凝血酶切割的C9的37 kDa片段(C9b)的特异性和可饱和结合(半数最大结合在35 nM),但与25 kDa的C9a片段无结合。C8α - γ的部分还原表明只有C8α多肽对CD59有亲和力,未检测到与C8γ链的特异性结合。(摘要截断于400字)

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