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首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >Fc Engineering of Human IgG1 for Altered Binding to the Neonatal Fc Receptor Affects Fc Effector Functions
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Fc Engineering of Human IgG1 for Altered Binding to the Neonatal Fc Receptor Affects Fc Effector Functions

机译:Fc工程改造人IgG1与新生儿Fc受体结合的改变会影响Fc效应子功能。

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摘要

Engineering of the constant Fc part of monoclonal human IgG1 (hIgG1) Abs is an approach to improve effector functions and clinical efficacy of next-generation IgG1-based therapeutics. A main focus in such development is tailoring of in vivo half-life and transport properties by engineering the pH-dependent interaction between IgG and the neonatal Fc receptor (FcRn), as FcRn is the main homeostatic regulator of hIgG1 half-life. However, whether such engineering affects binding to other Fc-binding molecules, such as the classical Fc gamma Rs and complement factor C1q, has not been studied in detail. These effector molecules bind to IgG1 in the lower hinge-C(H)2 region, structurally distant from the binding site for FcRn at the C(H)2-C(H)3 elbow region. However, alterations of the structural composition of the Fc may have long-distance effects. Indeed, in this study we show that Fc engineering of hIgG1 for altered binding to FcRn also influences binding to both the classical FcgRs and complement factor C1q, which ultimately results in alterations of cellular mechanisms such as Ab-dependent cell-mediated cytotoxicity, Ab-dependent cellular phagocytosis, and Ab-dependent complement-mediated cell lysis. Thus, engineering of the FcRn-IgG1 interaction may greatly influence effector functions, which has implications for the therapeutic efficacy and use of Fc-engineered hIgG1 variants.
机译:单克隆人类IgG1(hIgG1)Abs恒定Fc部分的工程化是一种改善新一代IgG1疗法的效应子功能和临床功效的方法。这种开发的主要重点是通过工程化IgG和新生儿Fc受体(FcRn)之间的pH依赖性相互作用来调整体内半衰期和转运特性,因为FcRn是hIgG1半衰期的主要稳态调节剂。但是,尚未详细研究这种工程化是否影响与其他Fc结合分子(例如经典FcγRs和补体因子C1q)的结合。这些效应分子与下部铰链-C(H)2区域中的IgG1结合,在结构上远离C(H)2-C(H)3肘部区域中FcRn的结合位点。然而,Fc的结构组成的改变可能具有长距离影响。确实,在这项研究中,我们表明hIgG1的Fc工程改造以改变与FcRn的结合,也影响与经典FcgR和补体因子C1q的结合,最终导致细胞机制发生改变,例如Ab依赖性细胞介导的细胞毒性,Ab-依赖的细胞吞噬作用和依赖抗体的补体介导的细胞裂解。因此,FcRn-IgG1相互作用的工程化可能极大地影响效应子功能,这对Fc工程化的hIgG1变体的治疗功效和使用具有影响。

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