Department of Bacteriology and Immunology, Haartman Institute, University of Helsinki, Haartmaninkatu 3, FIN-00014, Finland.
Mol Immunol. 2010 May;47(9):1686-91. doi: 10.1016/j.molimm.2010.03.007. Epub 2010 Apr 7.
Factor H (FH) regulates the alternative pathway of complement in plasma and mediates discrimination of cellular surfaces to alternative pathway activators and non-activators. The carboxyl-terminal domains 19 and 20 of FH are essential in target discrimination and are known to contain binding sites for the C3d part of C3b, heparin, and endothelial cells. Mutations in FH19-20 are frequently found in patients with atypical haemolytic uremic syndrome (aHUS). Most aHUS-associated and some other mutations have been shown to lead to impaired binding to C3d and C3b by the recombinant FH19-20 fragment. Most of these mutated residues, such as R1203, are located close to each other in domain 20 but some, such as Q1139, are located in domain 19. We generated mutant proteins Q1139A and R1203A of FH19-20 and showed that their binding to C3d and C3b was clearly impaired. To show that the effects on C3d/C3b binding are due to direct interactions rather than structural changes, we solved the X-ray crystal structures of the R1203A and Q1139A mutant proteins at 1.65 and 2.0A, respectively. Neither of the mutations caused any overall structural changes in FH19-20. It is thus evident that Q1139 in domain 19 and R1203 in domain 20 are directly involved in binding to the C3d part of C3b and therefore both the domains are involved in the interaction with C3d and C3b. This explains why several aHUS-associated FH mutations are found within domain 19 in addition to domain 20.
因子 H (FH) 调节血浆中补体替代途径,并介导细胞表面对替代途径激活剂和非激活剂的区分。FH 的羧基末端结构域 19 和 20 在靶标区分中至关重要,已知包含与 C3b 的 C3d 部分、肝素和内皮细胞的结合位点。FH19-20 中的突变在非典型溶血性尿毒综合征 (aHUS) 患者中经常发现。大多数与 aHUS 相关的突变和一些其他突变已被证明导致重组 FH19-20 片段与 C3d 和 C3b 的结合受损。这些突变残基中的大多数,如 R1203,位于 20 结构域中彼此靠近,但有些,如 Q1139,位于 19 结构域中。我们生成了 FH19-20 的突变蛋白 Q1139A 和 R1203A,并表明它们与 C3d 和 C3b 的结合明显受损。为了表明对 C3d/C3b 结合的影响是由于直接相互作用而不是结构变化,我们分别以 1.65 和 2.0A 的分辨率解决了 R1203A 和 Q1139A 突变蛋白的 X 射线晶体结构。这两种突变都没有导致 FH19-20 的任何整体结构变化。因此,很明显,19 结构域中的 Q1139 和 20 结构域中的 R1203 直接参与与 C3b 的 C3d 部分的结合,因此两个结构域都参与与 C3d 和 C3b 的相互作用。这解释了为什么除了 20 结构域外,几个与 aHUS 相关的 FH 突变还存在于 19 结构域中。