Department of Molecular Biology, Christian Doppler Laboratory for Allergy Diagnosis and Therapy, University of Salzburg, Salzburg, Austria.
J Immunol. 2010 Jan 15;184(2):725-35. doi: 10.4049/jimmunol.0902080. Epub 2009 Dec 7.
Previously, defined naturally occurring isoforms of allergenic proteins were classified as hypoallergens and therefore suggested as an agent for immunotherapy in the future. In this paper, we report for the first time the molecular background of hypoallergenicity by comparing the immunological behavior of hyperallergenic Betula verrucosa major Ag 1a (Bet v 1a) and hypoallergenic Bet v 1d, two isoforms of the major birch pollen allergen Betula verrucosa 1. Despite their cross-reactivity, Bet v 1a and Bet v 1d differ in their capacity to induce protective Ab responses in BALB/c mice. Both isoforms induced similar specific IgE levels, but only Bet v 1d expressed relevant titers of serum IgGs and IgAs. Interestingly, hypoallergenic Bet v 1d activated dendritic cells more efficiently, followed by the production of increased amounts of Th1- as well as Th2-type cytokines. Surprisingly, compared with Bet v 1a, Bet v 1d-immunized mice showed a decreased proliferation of regulatory T cells. Crystallographic studies and dynamic light scattering revealed that Bet v 1d demonstrated a high tendency to form disulfide-linked aggregates due to a serine to cysteine exchange at residue 113. We conclude that aggregation of Bet v 1d triggers the establishment of a protective Ab titer and supports a rationale for Bet v 1d being a promising candidate for specific immunotherapy of birch pollen allergy.
先前,已鉴定的变应原蛋白天然存在的同种型被归类为低变应原,因此被提议作为未来免疫治疗的候选药物。在本文中,我们首次通过比较两种主要桦树花粉过敏原 Betula verrucosa 1 的同种型——高度变应原 Betula verrucosa major Ag 1a (Bet v 1a) 和低变应原 Bet v 1d 的免疫反应行为,报告了低变应原性的分子背景。尽管它们具有交叉反应性,但 Bet v 1a 和 Bet v 1d 在诱导 BALB/c 小鼠保护性 Ab 反应的能力上存在差异。两种同种型都诱导了相似的特异性 IgE 水平,但只有 Bet v 1d 表达了相关的血清 IgG 和 IgA 滴度。有趣的是,低变应原性的 Bet v 1d 更有效地激活树突状细胞,随后产生更多的 Th1 和 Th2 型细胞因子。令人惊讶的是,与 Bet v 1a 相比,Bet v 1d 免疫的小鼠显示出调节性 T 细胞增殖减少。晶体学研究和动态光散射表明,由于残基 113 处丝氨酸到半胱氨酸的交换,Bet v 1d 表现出形成二硫键连接的聚集物的高趋势。我们得出结论,Bet v 1d 的聚集触发了保护性 Ab 滴度的建立,并支持将 Bet v 1d 作为桦树花粉过敏特异性免疫治疗的有前途候选药物的原理。