Fishelson Z, Pangburn M K, Müller-Eberhard H J
J Biol Chem. 1983 Jun 25;258(12):7411-5.
The purposes of this study were to demonstrate the C3 convertase complex, C3b, Bb (EC 3.4.21.47), of the alternative pathway of complement by ultracentrifugation and to determine whether the metal ion required for enzyme formation is present in the active enzyme complex. It has been shown previously that C3b,Bb formed with Ni2+ rather than Mg2+ exhibits enhanced stability. Using sucrose density gradient ultracentrifugation, an enzymatically active C3b,Bb(Ni) complex could be demonstrated which has a sedimentation coefficient of 10.7 S and which is stable in 10 mM EDTA. Upon formation of the enzyme with the radioisotope 63Ni2+, the ultracentrifugal distribution of the metal correlated with that of the enzyme complex. The molar ratio of Ni to C3b,Bb was 1:1. Displacement of Ni by Mg during formation of the enzyme indicated that both metals may bind to the same site in the enzyme. Binding of 63Ni to the catalytic site bearing fragment Bb was significantly stronger than its binding to C3b or to the zymogen, Factor B. It is proposed that there is one metal-binding site in the C3b,Bb enzyme which is not susceptible to chelation by EDTA and which is located in the Bb subunit.
本研究的目的是通过超速离心法展示补体替代途径的C3转化酶复合物C3b、Bb(EC 3.4.21.47),并确定活性酶复合物中是否存在酶形成所需的金属离子。先前已表明,由Ni2+而非Mg2+形成的C3b、Bb表现出更高的稳定性。使用蔗糖密度梯度超速离心法,可以证明一种具有酶活性的C3b、Bb(Ni)复合物,其沉降系数为10.7 S,并且在10 mM EDTA中稳定。在用放射性同位素63Ni2+形成酶后,金属的超速离心分布与酶复合物的分布相关。Ni与C3b、Bb的摩尔比为1:1。在酶形成过程中Mg对Ni的置换表明,两种金属可能结合到酶的同一位点。63Ni与带有催化位点的Bb片段的结合明显强于其与C3b或酶原B因子的结合。有人提出,C3b、Bb酶中有一个金属结合位点,它不易被EDTA螯合,且位于Bb亚基中。