Department of Hematology, Juntendo University Nerima Hospital, Nerima-ku, Tokyo, Japan.
Laboratory of Cell Biology, Biomedical Research Core Facilities, Juntendo University Graduate School of Medicine, Bunkyo-ku, Tokyo, Japan.
Commun Biol. 2024 Aug 23;7(1):1042. doi: 10.1038/s42003-024-06633-4.
Immunoglobulin E (IgE) plays pivotal roles in allergic diseases through interaction with a high-affinity receptor (FcεRI). We established that Fab fragments of anti-IgE antibodies (HMK-12 Fab) rapidly dissociate preformed IgE-FcεRI complexes in a temperature-dependent manner and inhibit IgE-mediated anaphylactic reactions, even after allergen challenge. X-ray crystallographic studies revealed that HMK-12 Fab interacts with each of two equivalent epitopes on the Cε2 homodimer domain involved in IgE F(ab')2. Consequently, HMK-12 Fab-mediated targeting of Cε2 reduced the binding affinity of Fc domains and resulted in rapid removal of IgE from the receptor complex. This unexpected finding of allosteric inhibition of IgE-FcεRI interactions by simultaneous targeting of two epitope sites on the Cε2 homodimer domain of IgE F(ab')2 may have implications for the development of novel therapies for allergic disease.
免疫球蛋白 E(IgE)通过与高亲和力受体(FcεRI)相互作用,在过敏性疾病中发挥关键作用。我们发现抗 IgE 抗体(HMK-12 Fab)的 Fab 片段能够以温度依赖的方式快速解离预先形成的 IgE-FcεRI 复合物,并抑制 IgE 介导的过敏反应,甚至在过敏原挑战后也是如此。X 射线晶体学研究表明,HMK-12 Fab 与 IgE F(ab')2 中涉及 Cε2 同源二聚体结构域的两个等效表位相互作用。因此,HMK-12 Fab 介导的 Cε2 靶向作用降低了 Fc 结构域的结合亲和力,并导致 IgE 从受体复合物中快速去除。这种通过同时靶向 IgE F(ab')2 的 Cε2 同源二聚体结构域上的两个表位位点对 IgE-FcεRI 相互作用的变构抑制的意外发现,可能对开发治疗过敏性疾病的新型疗法具有重要意义。