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首页> 外文期刊>ACS nano >Weak Fragment Crystallizable (Fc) Domain Interactions Drive the Dynamic Assembly of IgG Oligomers upon Antigen Recognition
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Weak Fragment Crystallizable (Fc) Domain Interactions Drive the Dynamic Assembly of IgG Oligomers upon Antigen Recognition

机译:弱片段可结晶(Fc)畴相互作用驱动IgG低聚物的动态组装在抗原识别时

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摘要

Activation of membrane receptors through clustering is a common mechanism found in various biological systems. Spatial proximity of receptors may be transduced across the membrane to initiate signaling pathways or alternatively be recognized by peripheral proteins or immune cells to trigger external effector functions. Here we show how specific immunoglobulin G (IgG) binding induces clustering of monomeric target molecules in lipid membranes through Fc- Fc interactions. We visualize and characterize the dynamic IgG oligomerization process and the molecular interactions involved using high-speed atomic force microscopy, single-molecule force spectroscopy, and quartz crystal microbalance experiments. We found that the Fc-Fc interaction strength is precisely tuned to be weak enough to prevent IgG oligomerization in solution at physiological titers, but enabling IgG oligomerization when Fabs additionally bind to their cognate surface epitopes, a mechanism that ultimately targets IgG-mediated effector functions such as classical complement activation to antigenic membranes.
机译:通过聚类激活膜受体是各种生物系统中发现的常用机制。受体的空间接近可以通过膜转导,以引发信号传导途径,或者可选地被外周蛋白或免疫细胞识别以触发外部效应器功能。在这里,我们展示了通过Fc-Fc相互作用诱导特定免疫球蛋白G(IgG)结合诱导脂质膜中单体靶分子的聚类。我们可视化和表征动态IgG寡聚化方法和使用高速原子力显微镜,单分子力光谱和石英晶微观实验所涉及的分子相互作用。我们发现Fc-Fc相互作用强度精确调谐到足够弱以防止在生理滴度的溶液中的IgG寡聚化,但是当Fabs另外与其同源表面表位结合时,使IgG寡聚化成为最终靶向IgG介导的效应功能的机制例如抗原膜的典型补体激活。

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