Departments of Molecular Biology and Genetics and Biomedicine, Aarhus University, DK-8000 Aarhus, Denmark.
Proc Natl Acad Sci U S A. 2013 Oct 8;110(41):16426-31. doi: 10.1073/pnas.1311261110. Epub 2013 Sep 24.
Complement receptors (CRs), expressed notably on myeloid and lymphoid cells, play an essential function in the elimination of complement-opsonized pathogens and apoptotic/necrotic cells. In addition, these receptors are crucial for the cross-talk between the innate and adaptive branches of the immune system. CR3 (also known as Mac-1, integrin αMβ2, or CD11b/CD18) is expressed on all macrophages and recognizes iC3b on complement-opsonized objects, enabling their phagocytosis. We demonstrate that the C3d moiety of iC3b harbors the binding site for the CR3 αI domain, and our structure of the C3d:αI domain complex rationalizes the CR3 selectivity for iC3b. Based on extensive structural analysis, we suggest that the choice between a ligand glutamate or aspartate for coordination of a receptor metal ion-dependent adhesion site-bound metal ion is governed by the secondary structure of the ligand. Comparison of our structure to the CR2:C3d complex and the in vitro formation of a stable CR3:C3d:CR2 complex suggests a molecular mechanism for the hand-over of CR3-bound immune complexes from macrophages to CR2-presenting cells in lymph nodes.
补体受体(CRs)在髓系和淋巴系细胞上表达,在清除补体调理的病原体和凋亡/坏死细胞方面发挥着重要作用。此外,这些受体对于固有免疫和适应性免疫系统分支之间的交叉对话至关重要。CR3(也称为 Mac-1、整合素 αMβ2 或 CD11b/CD18)表达于所有巨噬细胞上,可识别补体调理的物体上的 iC3b,从而使其能够吞噬。我们证明 iC3b 的 C3d 部分含有与 CR3 αI 结构域结合的结合位点,我们的 C3d:αI 结构域复合物结构合理地解释了 CR3 对 iC3b 的选择性。基于广泛的结构分析,我们认为配体谷氨酸或天冬氨酸与受体金属离子依赖性粘附位点结合的金属离子配位的选择取决于配体的二级结构。将我们的结构与 CR2:C3d 复合物以及体外形成稳定的 CR3:C3d:CR2 复合物进行比较,提出了一个分子机制,用于将 CR3 结合的免疫复合物从巨噬细胞递交给淋巴结中呈现 CR2 的细胞。