Suankratay C, Mold C, Zhang Y, Lint T F, Gewurz H
Department of Immunology/Microbiology, Rush Medical College, Chicago, IL 60612, USA.
Clin Exp Immunol. 1999 Sep;117(3):442-8. doi: 10.1046/j.1365-2249.1999.00998.x.
Mannan-binding lectin (MBL) is an acute phase protein which activates the classical complement pathway at the level of C4 and C2 via two novel serine proteases homologous to C1r and C1s. We recently reported that haemolysis via this lectin pathway requires alternative pathway amplification. The present experiments sought to establish the basis for this requirement, and hence focused on the activity and regulation of the C3 convertases. Complement activation was normalized between the lectin and classical pathways such that identical amounts of bound C4 and of haemolytically active C4,2 sites were present on the indicator cells. Under these conditions, there was markedly less haemolysis, associated with markedly less C3 and C5 deposited, via the lectin pathway than via the classical pathway, particularly when alternative pathway recruitment was blocked by depletion of factor D. Lectin pathway activation was associated with enhanced binding in the presence of MBL of complement control proteins C4bp and factor H to C4b and C3b, respectively, with decreased stability of the C3-converting enzyme C4b,2a attributable to C4bp. Immunodepletion of C4bp and/or factor H increased lectin pathway haemolysis and allowed lysis to occur in absence of the alternative pathway. Thus, the lectin pathway of humans is particularly susceptible to the regulatory effects of C4bp and factor H, due at least in part to MBL enhancement of C4bp binding to C4b and factor H binding to C3b.
甘露聚糖结合凝集素(MBL)是一种急性期蛋白,它通过两种与C1r和C1s同源的新型丝氨酸蛋白酶在C4和C2水平激活经典补体途径。我们最近报道,通过这种凝集素途径的溶血需要替代途径的放大作用。本实验旨在确定这种需求的基础,因此重点研究了C3转化酶的活性和调节。使凝集素途径和经典途径之间的补体激活标准化,使得指示细胞上存在等量的结合C4和溶血活性C4,2位点。在这些条件下,与经典途径相比,通过凝集素途径的溶血明显减少,同时C3和C5的沉积也明显减少,特别是当替代途径的募集因因子D的消耗而受阻时。凝集素途径的激活与补体控制蛋白C4bp和因子H分别在MBL存在下与C4b和C3b的结合增强有关,C3转化酶C4b,2a的稳定性因C4bp而降低。C4bp和/或因子H的免疫去除增加了凝集素途径的溶血,并使得在没有替代途径的情况下也能发生裂解。因此,人类的凝集素途径特别容易受到C4bp和因子H的调节作用,这至少部分归因于MBL增强了C4bp与C4b的结合以及因子H与C3b的结合。