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血清淀粉样蛋白P成分、蛋白S和补体C4b与补体C4b结合蛋白的独立关联以及该复合物随后与膜的关联。

Independent association of serum amyloid P component, protein S, and complement C4b with complement C4b-binding protein and subsequent association of the complex with membranes.

作者信息

Schwalbe R A, Dahlbäck B, Nelsestuen G L

机构信息

Department of Biochemistry, University of Minnesota, St. Paul 55108.

出版信息

J Biol Chem. 1990 Dec 15;265(35):21749-57.

PMID:2147688
Abstract

C4b-binding protein (C4BP) is a large complex assembly of eight subunits that functions as an inhibitor of the complement cascade. A portion of the C4BP in serum exists as a complex with protein S. This study demonstrated that another protein, serum amyloid P component (SAP), also formed a calcium-dependent complex with C4BP. The C4BP.SAP complex was detected by several methods including light scattering intensity, gel filtration, and sucrose density gradient ultracentrifugation. This complex was of high affinity relative to serum levels of these proteins so that no dissociation was detected at 3% of serum protein concentrations. The C4BP.SAP complex was also detected in normal serum and the results suggested that there was virtually no free SAP or uncomplexed C4BP in normal serum. In addition to its complex with C4BP, SAP underwent other calcium-dependent associations such as binding to phospholipid vesicles and self-aggregation. Self-aggregation was highly cooperative with kinetics corresponding to a reaction that was 6th-order with respect to calcium and required about 1.5 mM calcium. In contrast, formation of the SAP.C4BP complex and interaction of SAP with membranes required only about 0.4 and 1.0 mM calcium, respectively. Thus, selection of the correct conditions allowed study of the SAP.C4BP interaction without interference from self-aggregation. All three of these interactions of SAP were mutually exclusive and the SAP. C4BP interaction appeared to be favored over self-aggregation or binding of SAP to phospholipids. It seems likely that the biologically dominant interaction for SAP is with C4BP. The SAP.C4BP complex interacted with protein S and these binding sites appeared to be entirely independent. Furthermore, SAP had little or no effect on the ability of C4BP to bind C4b. Finally, the entire complex of proteins (C4BP, SAP, protein S, and C4b) could associate with membranes in the presence of calcium. Membrane binding occurred through the protein S component. This rather complicated assemblage of proteins probably functions in a regulatory role for the complement cascade or other biological systems. It is possible that elevated levels of SAP or nonequivalent levels of SAP and C4BP could contribute to certain pathological conditions.

摘要

C4b结合蛋白(C4BP)是一种由八个亚基组成的大型复合装配体,其作为补体级联反应的抑制剂发挥作用。血清中的一部分C4BP以与蛋白S的复合物形式存在。本研究表明,另一种蛋白,血清淀粉样P成分(SAP),也与C4BP形成了钙依赖性复合物。通过包括光散射强度、凝胶过滤和蔗糖密度梯度超速离心在内的多种方法检测到了C4BP.SAP复合物。相对于这些蛋白的血清水平,该复合物具有高亲和力,以至于在3%的血清蛋白浓度下未检测到解离。在正常血清中也检测到了C4BP.SAP复合物,结果表明正常血清中几乎不存在游离的SAP或未复合的C4BP。除了与C4BP形成复合物外,SAP还经历了其他钙依赖性结合,如与磷脂囊泡结合和自我聚集。自我聚集具有高度协同性,其动力学对应于一个对钙为六阶的反应,并且需要约1.5 mM的钙。相比之下,SAP.C4BP复合物的形成以及SAP与膜的相互作用分别仅需要约0.4 mM和1.0 mM的钙。因此,选择正确的条件可以在不受自我聚集干扰的情况下研究SAP.C4BP相互作用。SAP的所有这三种相互作用都是相互排斥的,并且SAP.C4BP相互作用似乎比SAP的自我聚集或与磷脂的结合更受青睐。似乎SAP在生物学上占主导地位的相互作用是与C4BP的相互作用。SAP.C4BP复合物与蛋白S相互作用,并且这些结合位点似乎是完全独立的。此外,SAP对C4BP结合C4b的能力几乎没有影响。最后,在存在钙的情况下,整个蛋白质复合物(C4BP、SAP、蛋白S和C4b)可以与膜结合。膜结合是通过蛋白S成分发生的。这种相当复杂的蛋白质组合可能在补体级联反应或其他生物系统中发挥调节作用。有可能SAP水平升高或SAP和C4BP水平不等可能导致某些病理状况。

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