Institute of Structural and Molecular Biology, School of Biological Sciences, King's Buildings, Mayfield Road, University of Edinburgh, Edinburgh EH9 3JR, UK.
J Mol Biol. 2010 Dec 10;404(4):697-710. doi: 10.1016/j.jmb.2010.10.005. Epub 2010 Oct 14.
The interactions between the complement receptor type 2 (CR2) and the C3 complement fragments C3d, C3dg, and iC3b are essential for the initiation of a normal immune response. A crystal-derived structure of the two N-terminal short consensus repeat (SCR1-2) domains of CR2 in complex with C3d has previously been elucidated. However, a number of biochemical and biophysical studies targeting both CR2 and C3d appear to be in conflict with these structural data. Previous mutagenesis and heteronuclear NMR spectroscopy studies directed toward the C3d-binding site on CR2 have indicated that the CR2-C3d cocrystal structure may represent an encounter/intermediate or nonphysiological complex. With regard to the CR2-binding site on C3d, mutagenesis studies by Isenman and coworkers [Isenman, D. E., Leung, E., Mackay, J. D., Bagby, S. & van den Elsen, J. M. H. (2010). Mutational analyses reveal that the staphylococcal immune evasion molecule Sbi and complement receptor 2 (CR2) share overlapping contact residues on C3d: Implications for the controversy regarding the CR2/C3d cocrystal structure. J. Immunol. 184, 1946-1955] have implicated an electronegative "concave" surface on C3d in the binding process. This surface is discrete from the CR2-C3d interface identified in the crystal structure. We generated a total of 18 mutations targeting the two (X-ray crystallographic- and mutagenesis-based) proposed CR2 SCR1-2 binding sites on C3d. Using ELISA analyses, we were able to assess binding of mutant forms of C3d to CR2. Mutations directed toward the concave surface of C3d result in substantially compromised CR2 binding. By contrast, targeting the CR2-C3d interface identified in the cocrystal structure and the surrounding area results in significantly lower levels of disruption in binding. Molecular modeling approaches used to investigate disparities between the biochemical data and the X-ray structure of the CR2-C3d cocrystal result in highest-scoring solutions in which CR2 SCR1-2 is docked within the concave surface of C3d.
补体受体 2 (CR2) 与 C3 补体片段 C3d、C3dg 和 iC3b 的相互作用对于启动正常免疫反应至关重要。先前已经阐明了 CR2 的两个 N 端短共识重复 (SCR1-2) 结构域与 C3d 复合物的晶体衍生结构。然而,许多针对 CR2 和 C3d 的生化和生物物理研究似乎与这些结构数据相冲突。以前针对 CR2 上 C3d 结合位点的诱变和异核 NMR 光谱研究表明,CR2-C3d 共晶结构可能代表一个相遇/中间或非生理复合物。关于 C3d 上的 CR2 结合位点,Isenman 及其同事的诱变研究 [Isenman, D. E., Leung, E., Mackay, J. D., Bagby, S. & van den Elsen, J. M. H. (2010). Mutational analyses reveal that the staphylococcal immune evasion molecule Sbi and complement receptor 2 (CR2) share overlapping contact residues on C3d: Implications for the controversy regarding the CR2/C3d cocrystal structure. J. Immunol. 184, 1946-1955] 表明 C3d 上的带负电荷的“凹面”表面在结合过程中起作用。该表面与晶体结构中鉴定的 CR2-C3d 界面不同。我们总共生成了 18 个突变,针对 C3d 上的两个(基于 X 射线晶体学和诱变)提议的 CR2 SCR1-2 结合位点。使用 ELISA 分析,我们能够评估突变型 C3d 与 CR2 的结合。针对 C3d 凹面的突变导致 CR2 结合严重受损。相比之下,针对共晶结构中鉴定的 CR2-C3d 界面和周围区域的突变导致结合的破坏程度显著降低。用于研究生化数据与 CR2-C3d 共晶的 X 射线结构之间差异的分子建模方法导致最高评分的解决方案,其中 CR2 SCR1-2 被对接在 C3d 的凹面内。
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