Leibniz Institute for Natural Product Research and Infection Biology-Hans Knöll Institute, Jena, Germany.
Mol Immunol. 2010 Mar;47(6):1347-55. doi: 10.1016/j.molimm.2009.12.005. Epub 2009 Dec 29.
C-reactive protein (CRP) is a pattern recognition molecule that binds several microbial and host ligands. Ligand-bound CRP activates the complement system via the classical pathway. Previously, we identified human complement factor H-related protein 4 (CFHR4), a member of the factor H protein family, as a CRP binding protein. Here, we investigated the molecular basis and the functional relevance of the interaction of CFHR4 with native CRP. Using recombinantly expressed CFHR4 fragments, the CRP binding site was localized to the first short consensus repeat (SCR) domain of CFHR4. Peptide arrays identified residues 35-41 of CFHR4 to be involved in CRP binding. Substitutions of the positively charged amino acids of this motif resulted in strongly reduced CRP binding. Sequence comparisons revealed that such a motif is not present in the related SCR6 domain of factor H, or in the homologous domains of the four other CFHR proteins. Homology modelling based on SCR6 of factor H showed that the CRP binding site is surface exposed on SCR1 of CFHR4. CFHR4-bound CRP was able to activate complement, determined by C3 fragment deposition. Recombinant CFHR4 proteins with mutations in the identified binding site showed reduced CRP binding, which in turn resulted in reduced complement activation. In summary, these data reveal the molecular basis of the specific interaction of CFHR4 with native CRP and suggest a role for CFHR4 in enhancing opsonization via CRP binding.
C 反应蛋白(CRP)是一种模式识别分子,可与多种微生物和宿主配体结合。配体结合的 CRP 通过经典途径激活补体系统。先前,我们鉴定了人补体因子 H 相关蛋白 4(CFHR4),一种补体因子 H 蛋白家族的成员,为 CRP 结合蛋白。在这里,我们研究了 CFHR4 与天然 CRP 相互作用的分子基础和功能相关性。使用重组表达的 CFHR4 片段,将 CRP 结合位点定位到 CFHR4 的第一个短共识重复(SCR)结构域。肽阵列鉴定出 CFHR4 的 35-41 位氨基酸残基参与 CRP 结合。该基序中带正电荷的氨基酸的取代导致 CRP 结合能力显著降低。序列比较表明,这种基序不存在于补体因子 H 的相关 SCR6 结构域中,也不存在于其他四个 CFHR 蛋白的同源结构域中。基于补体因子 H 的 SCR6 的同源建模表明,CRP 结合位点在 CFHR4 的 SCR1 上暴露于表面。CFHR4 结合的 CRP 能够激活补体,通过 C3 片段沉积来确定。在鉴定出的结合位点发生突变的重组 CFHR4 蛋白显示 CRP 结合减少,这反过来又导致补体激活减少。总之,这些数据揭示了 CFHR4 与天然 CRP 特异性相互作用的分子基础,并表明 CFHR4 通过 CRP 结合在增强调理作用中起作用。