Department of Medicine, Stony Brook University, Stony Brook, NY, USA.
Blood. 2012 Aug 9;120(6):1228-36. doi: 10.1182/blood-2011-07-369728. Epub 2012 Jun 13.
C1q modulates the differentiation and function of cells committed to the monocyte-derived dendritic cell (DC) lineage. Because the 2 C1q receptors found on the DC surface-gC1qR and cC1qR-lack a direct conduit into intracellular elements, we postulated that the receptors must form complexes with transmembrane partners. In the present study, we show that DC-SIGN, a C-type lectin expressed on DCs, binds directly to C1q, as assessed by ELISA, flow cytometry, and immunoprecipitation experiments. Surface plasmon resonance analysis revealed that the interaction was specific, and both intact C1q and the globular portion of C1q bound to DC-SIGN. Whereas IgG reduced this binding significantly, the Arg residues (162-163) of the C1q-A chain, which are thought to contribute to the C1q-IgG interaction, were not required for C1q binding to DC-SIGN. Binding was reduced significantly in the absence of Ca(2+) and by preincubation of DC-SIGN with mannan, suggesting that C1q binds to DC-SIGN at its principal Ca(2+)-binding pocket, which has increased affinity for mannose residues. Antigen-capture ELISA and immunofluorescence microscopy revealed that C1q and gC1qR associate with DC-SIGN on blood DC precursors and immature DCs. The results of the present study suggest that C1q/gC1qR may regulate DC differentiation and function through the DC-SIGN-mediated induction of cell-signaling pathways.
C1q 调节细胞向单核细胞衍生的树突状细胞 (DC) 谱系的分化和功能。因为在 DC 表面发现的 2 种 C1q 受体-gC1qR 和 cC1qR-缺乏直接进入细胞内元素的通道,我们假设受体必须与跨膜伴侣形成复合物。在本研究中,我们表明 DC-SIGN,一种在 DC 上表达的 C 型凝集素,直接与 C1q 结合,如 ELISA、流式细胞术和免疫沉淀实验所评估的。表面等离子体共振分析显示该相互作用是特异性的,完整的 C1q 和 C1q 的球形部分都与 DC-SIGN 结合。虽然 IgG 显著降低了这种结合,但 C1q-A 链的 Arg 残基 (162-163),被认为有助于 C1q-IgG 相互作用,对于 C1q 与 DC-SIGN 的结合并不是必需的。在没有 Ca(2+)的情况下和通过在 DC-SIGN 与甘露糖预孵育的情况下,结合显著减少,这表明 C1q 结合到 DC-SIGN 的主要 Ca(2+)结合口袋,该口袋对甘露糖残基具有更高的亲和力。抗原捕获 ELISA 和免疫荧光显微镜显示 C1q 和 gC1qR 与血液 DC 前体和未成熟 DC 上的 DC-SIGN 相关联。本研究的结果表明,C1q/gC1qR 可能通过 DC-SIGN 介导的细胞信号通路诱导来调节 DC 分化和功能。