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Maximizing the potency of an anti-TLR4 monoclonal antibody by exploiting proximity to Fcγ receptors

机译:通过利用与Fcγ受体的接近性来最大程度提高抗TLR4单克隆抗体的效力

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摘要

In order to treat Toll like receptor 4 (TLR4)-mediated diseases, we generated a potent antagonistic antibody directed against human TLR4, Hu 15C1. This antibody's potency can be modulated by engaging not only TLR4 but also Fcγ receptors (FcγR), a mechanism that is driven by avidity and not cell signaling. Here, using various formats of the antibody, we further dissect the relative contributions of the Fv and Fc portions of Hu 15C1, discovering that the relationship to potency of the different antibody arms is not linear. First, as could be anticipated, we observed that Hu 15C1 co-engages up to 3 receptors on the same plasma membrane, i.e., 2 TLR4 molecules (via its variable regions) and either FcγRI or FcγRIIA (via the Fc). The Kd of these interactions are in the nM range (3 nM of the Fv for TLR4 and 47 nM of the Fc for FcγRI). However, unexpectedly, neutralization experiments revealed that, due to the low level of cell surface TLR4 expression, the avidity afforded by engagement through 2 Fv arms was significantly limited. In contrast, the antibody's neutralization capacity increases by 3 logs when able to exploit Fc-FcγR interactions. Taken together, these results demonstrate an unforeseen level of contribution by FcγRs to an antibody's effectiveness when targeting a cell surface protein of relatively low abundance. These findings highlight an exploitable mechanism by which FcγR-bearing cells may be more powerfully targeted, envisioned to be broadly applicable to other reagents aimed at neutralizing cell surface targets on cells co-expressing FcγRs.
机译:为了治疗Toll样受体4(TLR4)介导的疾病,我们产生了针对人TLR4的有效拮抗抗体Hu 15C1。不仅可以通过结合TLR4,还可以通过与Fcγ受体(FcγR)结合来调节该抗体的效价,该机制是由亲和力而非细胞信号驱动的。在这里,使用各种形式的抗体,我们进一步剖析了Hu 15C1的Fv和Fc部分的相对贡献,发现与不同抗体臂效价的关系不是线性的。首先,可以预见的是,我们观察到Hu 15C1在同一质膜上共接合多达3个受体,即2个TLR4分子(通过其可变区)和FcγRI或FcγRIIA(通过Fc)。这些相互作用的Kd在nM范围内(对于TLR4,Fv为3nM,对于FcγRI,Fc为47nM)。然而,出乎意料的是,中和实验表明,由于细胞表面TLR4表达水平低,通过2个Fv臂参与所提供的亲和力受到极大限制。相反,当能够利用Fc-FcγR相互作用时,抗体的中和能力增加了3个对数。综上所述,这些结果表明,当靶向相对较低丰度的细胞表面蛋白时,FcγR对抗体有效性的不可预测的贡献水平。这些发现突出了一种可利用的机制,通过该机制可以更强力地靶向带有FcγR的细胞,可以广泛应用于旨在中和共表达FcγRs的细胞表面靶标的其他试剂。

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