Pangburn M K
J Immunol. 1986 Mar 15;136(6):2216-21.
Binding studies using purified decay-accelerating factor (DAF), CR1, and Factor H indicate that the primary interaction of DAF with C3 convertases is with the Bb or C2a subunits, whereas CR1 and Factor H interact primarily with the C3b or C4b subunits. The ability of soluble DAF, CR1, or Factor H to decay C3b,Bb bound to zymosan was inhibited by various concentrations of fluid-phase competitors (C3b, Bb, C3b,Bb, C3b,B, C4b, or C4b,C2a) in 0.1% NP-40 at 22 degrees C. The apparent association constants (appKa) for DAF were 0.045, 0.067, 0.91, 0.71, 0.00045, and 0.53 microM-1, respectively. The appKa for CR1 were 0.50, 0.0040, 1, 1, 1, and 1.1 microM-1, respectively. The appKa for Factor H were 4.3, 0.0005, 2.9, 6.3, 0.27, and 0.29 microM-1, respectively. Thus, C3b binds to DAF with a 10-fold lower affinity than to CR1 and a 100-fold lower affinity than to Factor H. The appKa of C3b,Bb for the three proteins were more similar: DAF (0.91 microM-1), CR1 (1 microM-1), and Factor H (2.9 microM-1). DAF binds to Bb with a 50% higher affinity than to C3b, and to C4b,C2a with a 1000-fold higher affinity than to C4b alone. In contrast, CR1 and Factor H bind almost equally well to the C3 convertases and to their noncatalytic subunits. The affinity of DAF for CVF,Bb was similar to its affinity for Bb alone, suggesting that DAF does not recognize conformational determinants unique to Bb in C3 convertases.
使用纯化的衰变加速因子(DAF)、补体受体1(CR1)和H因子进行的结合研究表明,DAF与C3转化酶的主要相互作用是与Bb或C2a亚基,而CR1和H因子主要与C3b或C4b亚基相互作用。在22℃下,0.1%NP-40中,各种浓度的液相竞争剂(C3b、Bb、C3b,Bb、C3b,B、C4b或C4b,C2a)抑制了可溶性DAF、CR1或H因子使结合在酵母聚糖上的C3b,Bb衰变的能力。DAF的表观缔合常数(appKa)分别为0.045、0.067、0.91、0.71、0.00045和0.53μM-1。CR1的appKa分别为0.50、0.0040、1、1、1和1.1μM-1。H因子的appKa分别为4.3、0.0005、2.9、6.3、0.27和0.29μM-1。因此,C3b与DAF结合的亲和力比与CR1低10倍,比与H因子低100倍。C3b,Bb与这三种蛋白质的appKa更相似:DAF(0.91μM-1)、CR1(1μM-1)和H因子(2.9μM-1)。DAF与Bb结合的亲和力比与C3b高50%,与C4b,C2a结合的亲和力比单独与C4b高1000倍。相比之下,CR1和H因子与C3转化酶及其非催化亚基的结合几乎同样良好。DAF对眼镜蛇毒因子,Bb的亲和力与其对单独Bb的亲和力相似,表明DAF不识别C3转化酶中Bb特有的构象决定簇。