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补体因子B的A型结构域发生突变,可促进高亲和力C3b结合。

Mutations of the type A domain of complement factor B that promote high-affinity C3b-binding.

作者信息

Hourcade D E, Mitchell L M, Oglesby T J

机构信息

Department of Medicine, Washington University School of Medicine, St. Louis, MO 63110, USA.

出版信息

J Immunol. 1999 Mar 1;162(5):2906-11.

Abstract

Factor B is a zymogen that carries the catalytic site of the complement alternative pathway convertases. During C3 convertase assembly, factor B associates with C3b and is cleaved at a single site by factor D. The Ba fragment is released, leaving the active complex, C3bBb. During the course of this process, the protease domain becomes activated. The type A domain of factor B, also part of Bb, is similar in structure to the type A domain of the complement receptor and integrin, CR3. Previously, mutations in the factor B type A domain were described that impair C3b-binding. This report describes "gain of function" mutations obtained by substituting factor B type A domain amino acids with homologous ones derived from the type A domain of CR3. Replacement of the betaA-alpha1 Mg2+ binding loop residue D254 with smaller amino acids, especially glycine, increased hemolytic activity and C3bBb stability. The removal of the oligosaccharide at position 260, near the Mg2+ binding cleft, when combined with the D254G substitution, resulted in increased affinity for C3b and iC3b, a C3b derivative. These findings offer strong evidence for the direct involvement of the type A domain in C3b binding, and are suggestive that steric effects of the D254 sidechain and the N260-linked oligosaccharide may contribute to the regulation of ligand binding.

摘要

B因子是一种携带补体替代途径转化酶催化位点的酶原。在C3转化酶组装过程中,B因子与C3b结合,并在单个位点被D因子切割。Ba片段被释放,留下活性复合物C3bBb。在此过程中,蛋白酶结构域被激活。B因子的A型结构域也是Bb的一部分,其结构与补体受体和整合素CR3的A型结构域相似。此前曾描述过B因子A型结构域中的突变会损害C3b结合。本报告描述了通过用来自CR3的A型结构域的同源氨基酸替换B因子A型结构域氨基酸而获得的“功能获得性”突变。用较小的氨基酸,尤其是甘氨酸替换βA-α1 Mg2+结合环残基D254,增加了溶血活性和C3bBb的稳定性。在Mg2+结合裂隙附近的第260位去除寡糖,与D254G替换相结合,导致对C3b和iC3b(一种C3b衍生物)的亲和力增加。这些发现为A型结构域直接参与C3b结合提供了有力证据,并表明D254侧链和N260连接的寡糖的空间效应可能有助于调节配体结合。

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