首页> 美国卫生研究院文献>other >An Engineered Human Fc variant With Exquisite Selectivity for FcγRIIIaV158 Reveals That Ligation of FcγRIIIa Mediates Potent Antibody Dependent Cellular Phagocytosis With GM-CSF-Differentiated Macrophages
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An Engineered Human Fc variant With Exquisite Selectivity for FcγRIIIaV158 Reveals That Ligation of FcγRIIIa Mediates Potent Antibody Dependent Cellular Phagocytosis With GM-CSF-Differentiated Macrophages

机译:一种对FcγRIIIaV158具有出色选择性的工程化人类Fc变体显示FcγRIIIa的连接介导了GM-CSF分化的巨噬细胞对抗体依赖性细胞吞噬的有效作用。

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摘要

IgG antibodies mediate the clearance of target cells via the engagement of Fc gamma receptors (FcγRs) on effector cells by eliciting antibody-dependent cellular cytotoxicity and phagocytosis (ADCC and ADCP, respectively). Because (i) the IgG Fc domain binds to multiple FcγRs with varying affinities; (ii) even low Fc:FcγRs affinity interactions can play a significant role when antibodies are engaged in high avidity immune complexes and (iii) most effector cells express multiple FcγRs, the clearance mechanisms that can be mediated by individual FcγR are not well-understood. Human FcγRIIIa (hFcγRIIIa; CD16a), which exists as two polymorphic variants at position 158, hFcγRIIIaV158 and hFcγRIIIaF158, is widely considered to only trigger ADCC, especially with natural killer (NK) cells as effectors. To evaluate the role of hFcγRIIIa ligation in myeloid-derived effector cells, and in particular on macrophages and monocytes which express multiple FcγRs, we engineered an aglycosylated engineered human Fc (hFc) variant, Fc3aV, which binds exclusively to hFcγRIIIaV158. Antibodies formatted with the Fc3aV variant bind to the hFcγRIIIaV158 allotype with a somewhat lower KD than their wild type IgG1 counterparts, but not to any other hFcγR. The exceptional selectivity for hFcγRIIIaV158 was demonstrated by SPR using increased avidity, dimerized GST-fused versions of the ectodomains of hFcγRs and from the absence of binding of large immune complex (IC) to CHO cells expressing each of the hFcγRs, including notably, the FcγRIIIaF158 variant or the highly homologous FcγRIIIb. We show that even though monocyte-derived GM-CSF differentiated macrophages express hFcγRIIIa at substantially lower levels than the other two major activating receptors, namely hFcγRI or hFcγRIIa, Fc3aV-formatted Rituximab and Herceptin perform ADCP toward CD20- and Her2-expressing cancer cells, respectively, at a level comparable to that of the respective wild-type antibodies. We further show that hFcγRIIIa activation plays a significant role on ADCC by human peripheral monocytes. Our data highlight the utility of Fc3aV and other similarly engineered exquisitely selective, aglycosylated Fc variants toward other hFcγRs as tools for the detailed molecular understanding of hFcγR biology.
机译:IgG抗体通过引起抗体依赖性细胞毒性和吞噬作用(分别为ADCC和ADCP),通过Fcγ受体(FcγR)与效应细胞的结合来介导靶细胞的清除。因为(i)IgG Fc结构域以不同的亲和力与多个FcγR结合; (ii)当抗体与高亲和力免疫复合物结合时,即使低的Fc:FcγRs亲和力相互作用也可以发挥重要作用,并且(iii)大多数效应细胞表达多种FcγRs,由单个FcγR介导的清除机制尚未得到很好的理解。 。人们普遍认为人FcγRIIIa(hFcγRIIIa; CD16a)以158位的两个多态性变体形式存在,即hFcγRIIIaV158和hFcγRIIIaF158,尤其是在天然杀伤(NK)细胞作为效应子的情况下,它只能触发ADCC。为了评估hFcγRIIIa连接在髓样来源的效应细胞中的作用,尤其是在表达多个FcγR的巨噬细胞和单核细胞上的作用,我们设计了一种无糖基化的人Fc(hFc)变异体Fc3aV,其仅与hFcγRIIIaV158结合。用Fc3aV变异体格式化的抗体以比野生型IgG1对应物稍低的KD与hFcγRIIIaV158同种异型结合,但不与任何其他hFcγR结合。 SPR使用增加的亲合力,hFcγRs胞外域的GST融合版本的二聚化以及没有大型免疫复合物(IC)与表达每种hFcγRs的CHO细胞(包括FcγRIIIaF158)的结合均不存在,证明了对hFcγRIIIaV158的出色选择性变异体或高度同源的FcγRIIIb。我们显示,即使单核细胞衍生的GM-CSF分化的巨噬细胞表达hFcγRIIIa的水平明显低于其他两个主要激活受体,即hFcγRI或hFcγRIIa,Fc3aV格式的利妥昔单抗和赫赛汀对表达CD20和Her2的癌细胞执行ADCP,分别以与相应野生型抗体相当的水平。我们进一步表明,hFcγRIIIa激活在人类外周血单核细胞对ADCC上起着重要作用。我们的数据突出了Fc3aV和其​​他类似工程改造的选择性选择性,无糖基化的Fc变体对其他hFcγR的效用,作为对hFcγR生物学进行详细分子理解的工具。

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