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Engineered hexavalent Fc proteins with enhanced Fc-gamma receptor avidity provide insights into immune-complex interactions

机译:具有增强的Fc-γ受体亲和力的工程化六价Fc蛋白可提供对免疫复合物相互作用的深入了解

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摘要

Autoantibody-mediated diseases are currently treated with intravenous immunoglobulin, which is thought to act in part via blockade of Fc gamma receptors, thereby inhibiting autoantibody effector functions and subsequent pathology. We aimed to develop recombinant molecules with enhanced Fc receptor avidity and thus increased potency over intravenous immunoglobulin. Here we describe the molecular engineering of human Fc hexamers and explore their therapeutic and safety profiles. We show Fc hexamers were more potent than IVIG in phagocytosis blockade and disease models. However, in human whole-blood safety assays incubation with IgG1 isotype Fc hexamers resulted in cytokine release, platelet and complement activation, whereas the IgG4 version did not. We used a statistically designed mutagenesis approach to identify the key Fc residues involved in these processes. Cytokine release was found to be dependent on neutrophil FcγRIIIb interactions with L234 and A327 in the Fc. Therefore, Fc hexamers provide unique insights into Fc receptor biology.
机译:当前,用静脉内免疫球蛋白治疗自身抗体介导的疾病,据认为,这种免疫球蛋白部分地通过阻断Fcγ受体起作用,从而抑制自身抗体效应子功能和随后的病理。我们的目标是开发具有增强的Fc受体亲和力的重组分子,从而比静脉内免疫球蛋白提高效力。在这里,我们描述了人类Fc六聚体的分子工程学,并探讨了它们的治疗和安全性概况。我们显示,在吞噬作用阻滞和疾病模型中,Fc六聚体比IVIG更有效。但是,在人类全血安全性分析中,与IgG1同型Fc六聚体一起孵育会导致细胞因子释放,血小板和补体激活,而IgG4版本却没有。我们使用了统计设计的诱变方法来鉴定参与这些过程的关键Fc残基。发现细胞因子的释放取决于嗜中性粒细胞FcγRIIIb与Fc中的L234和A327的相互作用。因此,Fc六聚体为Fc受体生物学提供了独特的见解。

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