表位
免疫球蛋白E
脱颗粒
过敏原
化学
Profilin公司
单克隆抗体
抗体
生物
免疫学
生物化学
过敏
细胞
受体
细胞骨架
肌动蛋白细胞骨架
作者
Israel Mares‐Mejía,Siseth Martínez‐Caballero,Claudia Angélica Garay-Canales,Patricia Cano‐Sánchez,Alfredo Torres‐Larios,Samuel Lara‐González,Enrique Ortega,Adela Rodríguez‐Romero
摘要
Oligomerization of allergens plays an important role in IgE-mediated reactions, as effective crosslinking of IgE- FcεRI complexes on the cell membrane is dependent on the number of exposed B-cell epitopes in a single allergen molecule or on the occurrence of identical epitopes in a symmetrical arrangement. Few studies have attempted to experimentally demonstrate the connection between allergen dimerization and the ability to trigger allergic reactions. Here we studied plant allergenic profilins rHev b 8 (rubber tree) and rZea m 12 (maize) because they represent an important example of cross-reactivity in the latex-pollen-food syndrome. Both allergens in their monomeric and dimeric states were isolated and characterized by exclusion chromatography and mass spectrometry and were used in immunological in vitro experiments. Their crystal structures were solved, and for Hev b 8 a disulfide-linked homodimer was found. Comparing the structures we established that the longest loop is relevant for recognition by IgE antibodies, whereas the conserved regions are important for cross-reactivity. We produced a novel monoclonal murine IgE (mAb 2F5), specific for rHev b 8, which was useful to provide evidence that profilin dimerization considerably increases the IgE-mediated degranulation in rat basophilic leukemia cells.
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