Department of Experimental Immunohematology, Sanquin Research, and Landsteiner Laboratory, Academic Medical Center, University of Amsterdam, Plesmanlaan 125, Amsterdam 1066 CX, The Netherlands.
Nat Commun. 2011 Dec 20;2:599. doi: 10.1038/ncomms1608.
Human IgG3 displays the strongest effector functions of all IgG subclasses but has a short half-life for unresolved reasons. Here we show that IgG3 binds to IgG-salvage receptor (FcRn), but that FcRn-mediated transport and rescue of IgG3 is inhibited in the presence of IgG1 due to intracellular competition between IgG1 and IgG3. We reveal that this occurs because of a single amino acid difference at position 435, where IgG3 has an arginine instead of the histidine found in all other IgG subclasses. While the presence of R435 in IgG increases binding to FcRn at neutral pH, it decreases binding at acidic pH, affecting the rescue efficiency-but only in the presence of H435-IgG. Importantly, we show that in humans the half-life of the H435-containing IgG3 allotype is comparable to IgG1. H435-IgG3 also gave enhanced protection against a pneumococcal challenge in mice, demonstrating H435-IgG3 to be a candidate for monoclonal antibody therapies.
人 IgG3 显示出所有 IgG 亚类中最强的效应功能,但由于未解决的原因其半衰期较短。在这里,我们表明 IgG3 与 IgG 回收受体(FcRn)结合,但由于 IgG1 和 IgG3 之间的细胞内竞争,在 IgG1 存在的情况下,FcRn 介导的 IgG3 转运和拯救被抑制。我们揭示,这是因为 IgG3 在位置 435 处有一个单一的氨基酸差异,其中 IgG3 有精氨酸而不是所有其他 IgG 亚类中的组氨酸。虽然 IgG 中 R435 的存在增加了在中性 pH 下与 FcRn 的结合,但它降低了在酸性 pH 下的结合,影响了拯救效率——但仅在存在 H435-IgG 的情况下。重要的是,我们表明在人类中,含有 H435 的 IgG3 同种型的半衰期与 IgG1 相当。H435-IgG3 还在小鼠中增强了对肺炎球菌攻击的保护作用,表明 H435-IgG3 是单克隆抗体治疗的候选药物。