Fishelson Z, Müller-Eberhard H J
J Immunol. 1982 Dec;129(6):2603-7.
We demonstrate that nickel++ (Ni) can replace Mg in the formation of the C3b,Bb enzyme, and that Ni is more efficient in enzyme formation than Mg. C3b-bearing sheep erythrocytes (EC3b) were used to measure radiolabeled Factor B uptake and C3 convertase activity. Up to nine times more Factor B was specifically bound to EC3b in the presence of Ni than in the presence of Mg under identical conditions. To form one effective hemolytic site (1 Z) per EC3b cell with Ni, three times less Factor B, 12 times less Factor D, and 66 times less metal ion were required than when using Mg. The C3b,Bb formed with Ni (C3b,Bb(Ni)) had a 5 to 10 times longer half-life at different temperatures than the enzyme formed with Mg (C3b,Bb(Mg)). Native properdin stabilized C3b,Bb(Ni) to the same extent as C3b,Bb(Mg) (four to five times) and Factor H accelerated similarly the decay of both enzymes. Ni could also replace Mg in the formation of the C4b,2a enzyme. C4b,2a formation was measured by using C1 and C4b-bearing sheep erythrocytes (EAC1,4b) and native C2. To form 1 Z per EAC1,4b cell with Ni, two times less C2 and 60 times less metal ion were required than when using Mg. The half-life of the C4b,2a formed with Ni was two times longer than that formed with Mg. Decay of both C3b,Bb and C4b,2a enzymes formed either with Mg or with Ni was unaffected by EDTA. These results show that Ni is more efficient than Mg in the generation of both enzymes and suggest that Ni binds to the Mg-binding sites of the enzymes with a higher affinity than Mg.
我们证明,镍离子(Ni)在C3b、Bb酶的形成过程中可以替代镁离子(Mg),并且在酶的形成方面,Ni比Mg更有效。携带C3b的绵羊红细胞(EC3b)用于测量放射性标记的B因子摄取和C3转化酶活性。在相同条件下,与存在Mg时相比,存在Ni时特异性结合到EC3b上的B因子多达9倍。与使用Mg时相比,用Ni为每个EC3b细胞形成一个有效溶血位点(1 Z)所需的B因子少3倍、D因子少12倍、金属离子少66倍。用Ni形成的C3b、Bb(C3b、Bb(Ni))在不同温度下的半衰期比用Mg形成的酶(C3b、Bb(Mg))长5至10倍。天然备解素对C3b、Bb(Ni)的稳定程度与对C3b、Bb(Mg)的稳定程度相同(4至5倍),并且H因子对两种酶衰变的加速作用相似。Ni在C4b、2a酶的形成过程中也可以替代Mg。通过使用C1和携带C4b的绵羊红细胞(EAC1,4b)以及天然C2来测量C4b、2a的形成。与使用Mg时相比,用Ni为每个EAC1,4b细胞形成1 Z所需的C2少2倍、金属离子少60倍。用Ni形成的C4b、2a的半衰期比用Mg形成的长2倍。由Mg或Ni形成的C3b、Bb和C4b、2a酶的衰变均不受EDTA影响。这些结果表明,在两种酶的生成过程中,Ni比Mg更有效,并且表明Ni以比Mg更高的亲和力结合到酶的Mg结合位点上。