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An engineered Fc variant of an IgG eliminates all immune effector functions via structural perturbations

机译:IgG的工程化Fc变体通过结构扰动消除了所有免疫效应子功能

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The Fc variant of IgG2, designated as IgG2σ, was engineered with V234A/G237A /P238S/H268A/V309L/A330S/P331S substitutions to eliminate affinity for Fcγ receptors and C1q complement protein and consequently, immune effector functions. IgG2σ was compared to other previously well-characterized Fc 'muted' variants, including aglycosylated IgG1, IgG2m4 (H268Q/V309L/A330S/P331S, changes to IgG4), and IgG4 ProAlaAla (S228P/L234A/L235A) in its capacity to bind FcγRs and activate various immune-stimulatory responses. In contrast to the previously characterized muted Fc variants, which retain selective FcγR binding and effector functions, IgG2σ shows no detectable binding to the Fcγ receptors in affinity and avidity measurements, nor any detectable antibody-dependent cytotoxicity, phagocytosis, complement activity, or Fc-mediated cytokine release. Moreover, IgG2σ shows minimal immunogenic potential by T-cell epitope analysis. The circulating half-life of IgG2σ in monkeys is extended relative to IgG1 and IgG2, in spite of similar in vitro binding to recombinant FcRn. The three-dimensional structure of the Fc, needed for assessing the basis for the absence of effector function, was compared with that of IgG2 revealing a number of conformational differences near the hinge region of the CH2 domain that result from the amino acid substitutions. Modeling reveals that at least one of the key interactions with FcγRs is disrupted by a conformational change that reorients P329 to a position that prevents it from interacting with conserved W90 and W113 residues of the FcγRs. Inspection of the structure also indicated significant changes to the conformations of D270 and P329 in the CH2 domain that could negatively impact C1q binding. Thus, structural perturbations of the Fc provide a rationale for the loss of function. In toto, these properties of IgG2σ suggest that it is a superior alternative to previously described IgG variants of minimal effector function, for future therapeutic applications of non-immunostimulatory mAb and Fc-fusion platforms.
机译:用V234A / G237A / P238S / H268A / V309L / A330S / P331S取代工程改造了IgG2的Fc变体,称为IgG2σ,以消除对Fcγ受体和C1q补体蛋白的亲和力,从而消除免疫效应子功能。将IgG2σ与其他先前特征明确的Fc``突变''变体进行了比较,包括无糖基化的IgG1,IgG2m4(H268Q / V309L / A330S / P331S,IgG4的变化)和IgG4 ProAlaAla(S228P / L234A / L235A)结合FcγR的能力。并激活各种免疫刺激反应。与保留了选择性FcγR结合和效应子功能的先前表征的突变Fc变体相反,IgG2σ在亲和力和亲和力测量中没有显示可检测到的与Fcγ受体的结合,也没有任何可检测到的抗体依赖性细胞毒性,吞噬作用,补体活性或Fc-介导的细胞因子释放。而且,通过T细胞表位分析,IgG2σ显示出最小的免疫原性潜力。尽管在体外与重组FcRn的结合相似,但IgG2σ在猴中的循环半衰期仍相对于IgG1和IgG2延长。评估了缺乏效应子功能基础所需的Fc三维结构与IgG2的三维结构进行了比较,揭示了CH2结构域铰链区附近的许多构象差异是由氨基酸取代引起的。建模表明,与FcγR的关键相互作用中至少有一个被构象变化所破坏,该构象变化将P329重新定向到一个阻止其与FcγR的保守W90和W113残基相互作用的位置。结构检查还表明,CH2域中D270和P329构象的显着变化可能会对C1q结合产生负面影响。因此,Fc的结构扰动为功能丧失提供了原理。综上所述,对于非免疫刺激mAb和Fc融合平台的未来治疗应用,IgG2σ的这些特性表明,它是先前描述的效应功能最小的IgG变体的优良替代品。

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