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聚集素,即人类载脂蛋白和补体抑制剂,可与补体C7、C8β和C9的b结构域结合。

Clusterin, the human apolipoprotein and complement inhibitor, binds to complement C7, C8 beta, and the b domain of C9.

作者信息

Tschopp J, Chonn A, Hertig S, French L E

机构信息

Institute of Biochemistry, University of Lausanne, Epalinges, Switzerland.

出版信息

J Immunol. 1993 Aug 15;151(4):2159-65.

PMID:8345200
Abstract

Clusterin is a heterodimeric multifunctional protein expressed in a variety of tissues and cells. It forms high density lipid complexes in plasma and participates in the control of the lytic activity of the late complement complex (TCC, C5b-9). Together with vitronectin, clusterin binds to the nascent amphiphilic C5b-9 complex, rendering it water soluble and lytically inactive. To define the interactions that underlie the complement-inhibitory function of clusterin, we have examined the binding interactions between [125I]clusterin and the isolated components of the complex, C5b-6, C7, C8, and C9 and vitronectin. By using ligand blotting in the presence of Tween, specific binding of the labeled clusterin with C7, the beta-subunit of C8 and C9 was detected. Binding to C9 was competed by polymerized C9, but not by C8, C7, C6, and CD59, suggesting that the conformational change occurring during the hydrophilic-amphiphilic transition of C9 exposes the interaction site for clusterin. When thrombin-treated C9 was analyzed, clusterin was found to recognize the C9b fragment containing the hydrophobic membrane interaction segment. Both subunits of clusterin interact with C9 and are similarly potent in inhibiting C5b-9-mediated hemolysis and Zn+(+)-induced C9 polymerization. These results show that clusterin exerts its inhibitory effect by interacting with a structural motif common to C7, C8 alpha, and C9b.

摘要

簇集素是一种异源二聚体多功能蛋白,在多种组织和细胞中表达。它在血浆中形成高密度脂质复合物,并参与晚期补体复合物(TCC,C5b-9)溶解活性的调控。簇集素与玻连蛋白一起,与新生的两亲性C5b-9复合物结合,使其具有水溶性且无溶解活性。为了确定簇集素补体抑制功能的潜在相互作用,我们研究了[125I]簇集素与复合物的分离成分C5b-6、C7、C8和C9以及玻连蛋白之间的结合相互作用。通过在吐温存在下进行配体印迹分析,检测到标记的簇集素与C7、C8的β亚基和C9有特异性结合。与C9的结合可被聚合的C9竞争,但不能被C8、C7、C6和CD59竞争,这表明C9在亲水-两亲性转变过程中发生的构象变化暴露了簇集素的相互作用位点。当分析凝血酶处理的C9时,发现簇集素能识别含有疏水膜相互作用片段的C9b片段。簇集素的两个亚基都与C9相互作用,并且在抑制C5b-9介导的溶血和Zn+(+)诱导的C9聚合方面同样有效。这些结果表明,簇集素通过与C7、C8α和C9b共有的结构基序相互作用发挥其抑制作用。

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