Weiler J M, Yurt R W, Fearon D T, Austen K F
J Exp Med. 1978 Feb 1;147(2):409-21. doi: 10.1084/jem.147.2.409.
Native rat mast cell macromolecular heparin proteoglycan and commercial hog heparin glycosaminoglycan chains inhibit generation of the amplification convertase, C3b, Bb. The inhibitory action of heparin is not due to chelation of magnesium. Heparin is most active in inhibiting convertase formation on cellular intermediates formed with the lowest C3b input and developed with the highest B concentration, thereby suggesting the receptor site for B on C3b as the point of heparin action. This interpretation is consistent with the demonstration that heparin prevents B utilization during the fluid phase interaction of C3b, B, and D. Inhibition is observed also when C3b,Bb generation takes place on cellular intermediates in the presence of P or C3NeF, which yield stabilized forms of the convertase. 50 times the concentration of heparin required to inhibit convertase generation does not accelerate the decay of the unstabilized or the C3NeF-stabilized convertases and has only a modest effect on the P-stabilized convertase. An additional effect of heparin is to impair beta1H-mediated decay-dissociation of C3b,Bb. The concentration of native or commercial heparin which prevents convertase formation is in the same range as that required for the demonstration of its anti-coagulant and anti-thrombin III cofactor activities. The additional finding that this inhibitory action of heparin can be expressed by the isolated mast cell granule suggests that native heparin may contribute to the modulation of the amplification pathway of complement.
天然大鼠肥大细胞大分子肝素蛋白聚糖和商业猪肝素糖胺聚糖链可抑制补体C3b、Bb转化酶的生成。肝素的抑制作用并非由于镁离子螯合。肝素在抑制由最低C3b输入量形成并在最高B浓度下发展的细胞中间体上的转化酶形成方面最为活跃,这表明C3b上B的受体位点是肝素作用的靶点。这一解释与肝素在C3b、B和D的液相相互作用过程中阻止B利用的证明一致。当在P或C3NeF存在的情况下,在细胞中间体上发生C3b、Bb生成时也观察到抑制作用,这会产生稳定形式的转化酶。抑制转化酶生成所需肝素浓度的50倍不会加速未稳定化或C3NeF稳定化转化酶的衰变,对P稳定化转化酶的影响也较小。肝素的另一个作用是损害β1H介导的C3b、Bb衰变解离。阻止转化酶形成的天然或商业肝素浓度与证明其抗凝和抗凝血酶III辅因子活性所需的浓度范围相同。另外的发现是,肝素的这种抑制作用可以由分离的肥大细胞颗粒表现出来,这表明天然肝素可能有助于调节补体的放大途径。