Härdig Y, García de Frutos P, Dahlbäck B
Department of Clinical Chemistry, University of Lund, Malmö General Hospital, Sweden.
Biochem J. 1995 Jun 15;308 ( Pt 3)(Pt 3):795-800. doi: 10.1042/bj3080795.
C4b-binding protein (C4BP) is a high-molecular-mass glycoprotein which contains binding sites for complement component C4b, anti-coagulant vitamin K-dependent protein S and serum amyloid P component (SAP). The major form of C4BP in plasma is composed of seven identical alpha-chains and a single beta-chain. We have expressed full-length cDNA for the alpha-chain in a eukaryotic expression system and characterized functional properties of non-beta-chain-containing C4BP. During synthesis, recombinant alpha-chains polymerized into two different high-molecular-mass C4BP forms which were composed of seven or eight alpha-chains. Recombinant C4BP bound C4(H2O) (used instead of C4b) equally as well as native C4BP, functioned equally as well as factor I cofactor in the degradation of C4(H2O) and bound to SAP. In contrast, the recombinant C4BP did not bind protein S and therefore did not inhibit the ability of protein S to function as a cofactor to activated protein C. Tunicamycin treatment of the transfected cells prevented N-linked glycosylation, but did not affect polymerization of the alpha-chains into a high-molecular-mass C4BP. The non-glycosylated C4BP had comparable properties to glycosylated C4BP in several functional assays. These results demonstrate polymerization of C4BP alpha-chains to be independent both of the beta-chain and of the N-linked carbohydrates. Moreover, N-linked carbohydrates and the beta-chain were neither required for the ability of C4BP to bind C4b and to function as factor I cofactor nor for the interaction with SAP.
C4b结合蛋白(C4BP)是一种高分子量糖蛋白,它含有补体成分C4b、抗凝血维生素K依赖性蛋白S和血清淀粉样蛋白P成分(SAP)的结合位点。血浆中C4BP的主要形式由七条相同的α链和一条β链组成。我们已经在真核表达系统中表达了α链的全长cDNA,并对不含β链的C4BP的功能特性进行了表征。在合成过程中,重组α链聚合成两种不同的高分子量C4BP形式,它们由七条或八条α链组成。重组C4BP与C4(H2O)(用于替代C4b)的结合能力与天然C4BP相同,在C4(H2O)降解过程中作为I因子辅因子的功能也相同,并且能与SAP结合。相比之下,重组C4BP不结合蛋白S,因此不抑制蛋白S作为活化蛋白C辅因子的功能。用衣霉素处理转染细胞可阻止N-连接糖基化,但不影响α链聚合成高分子量C4BP。在几种功能测定中,非糖基化的C4BP与糖基化的C4BP具有相当的特性。这些结果表明,C4BPα链的聚合既不依赖于β链,也不依赖于N-连接的碳水化合物。此外,C4BP结合C4b和作为I因子辅因子的能力以及与SAP的相互作用既不需要N-连接的碳水化合物,也不需要β链。