Rawal Nenoo, Rajagopalan Rema, Salvi Veena P
Department of Biochemistry, University of Texas Health Science Center, 11937, US Highway 271, Tyler, TX 75708, USA.
Mol Immunol. 2009 Sep;46(15):2902-10. doi: 10.1016/j.molimm.2009.07.006. Epub 2009 Aug 5.
The complement lectin pathway, an essential component of the innate immune system, is geared for rapid recognition of infections as each C4b deposited via this pathway is capable of forming a C3/C5 convertase. In the present study, role of C4b-binding protein (C4BP) in regulating the lectin pathway C3/C5 convertase assembled on zymosan and sheep erythrocytes coated with mannan (E(Man)) was examined. While the C4BP concentration for inhibiting 50% (IC(50)) formation of surface-bound C3 convertase on the two surfaces was similar to that obtained for the soluble C3 convertase (1.05nM), approximately 3- and 41-fold more was required to inhibit assembly of the C5 convertase on zymosan (2.81nM) and E(Man) (42.66nM). No difference in binding interactions between C4BP and surface-bound C4b alone or in complex with C3b was observed. Increasing the C4b density on zymosan (14,000-431,000 C4b/Zym) increased the number of C4b bound per C4BP from 2.87 to 8.23 indicating that at high C4b density all seven alpha-chains of C4BP are engaged in C4b-binding. In contrast, the number of C4b bound per C4BP remained constant (3.79+/-0.60) when the C4b density on E(Man) was increased. The data also show that C4BP regulates assembly and decay of the lectin pathway C3/C5 convertase more stringently than the classical pathway C3/C5 convertase because of a approximately 7- to 13-fold greater affinity for C4b deposited via the lectin pathway than the classical pathway. C4BP thus regulates efficiently the four times greater potential of the lectin pathway than the classical pathway in generating the C3/C5 convertase and hence production of pro-inflammatory products, which are required to fight infections but occasionally cause pathological inflammatory reactions.
补体凝集素途径是固有免疫系统的重要组成部分,由于通过该途径沉积的每个C4b都能够形成C3/C5转化酶,因此它能够快速识别感染。在本研究中,检测了C4b结合蛋白(C4BP)在调节凝集素途径C3/C5转化酶组装方面的作用,该转化酶组装在酵母聚糖和包被甘露聚糖的绵羊红细胞(E(Man))上。虽然抑制酵母聚糖和E(Man)这两种表面上50%(IC(50))的表面结合C3转化酶形成所需的C4BP浓度与可溶性C3转化酶的浓度相似(1.05nM),但抑制酵母聚糖(2.81nM)和E(Man)(42.66nM)上C5转化酶的组装分别大约需要多3倍和41倍的C4BP。未观察到C4BP与单独的表面结合C4b或与C3b形成的复合物之间的结合相互作用存在差异。增加酵母聚糖上的C4b密度(14,000 - 431,000个C4b/酵母聚糖)会使每个C4BP结合的C4b数量从2.87增加到8.23,这表明在高C4b密度下,C4BP的所有七条α链都参与了C4b结合。相反,当E(Man)上的C4b密度增加时,每个C4BP结合的C4b数量保持恒定(3.79±0.60)。数据还表明,由于对通过凝集素途径沉积的C4b的亲和力比对经典途径沉积的C4b大约高7至13倍,C4BP对凝集素途径C3/C5转化酶组装和衰变的调节比经典途径C3/C5转化酶更为严格。因此,C4BP有效地调节了凝集素途径比经典途径大四倍的产生C3/C5转化酶的潜力,从而调节促炎产物的产生,这些产物是对抗感染所必需的,但偶尔会引起病理性炎症反应。