Institute of Biochemistry and Molecular Biology, University of Hamburg, Hamburg, Germany.
J Investig Allergol Clin Immunol. 2012;22(7):476-84.
Immunoglobulin (Ig) E-mediated reactions to honeybee venom can cause severe anaphylaxis, sometimes with fatal consequences. Detailed knowledge of the allergic potential of all venom components is necessary to ensure proper diagnosis and treatment of allergy and to gain a better understanding of the allergological mechanisms of insect venoms.
Our objective was to undertake an immunochemical and structural evaluation of the putative low-molecular-weight serine protease inhibitor Api m 6, a component of honeybee venom.
We recombinantly produced Api m 6 as a soluble protein in Escherichia coli and in Spodoptera frugiperda (Sf9) insect cells.We also assessed specific IgE reactivity of venom-sensitized patients with 2 prokaryotically produced Api m 6 variants using enzyme-linked immunosorbent assay. Moreover, we built a structural model ofApi m 6 and compared it with other protease inhibitor structures to gain insights into the function of Api m 6.
In a population of 31 honeybee venom-allergic patients, 26% showed specific IgE reactivity with prokaryotically produced Api m 6, showing it to be a minor but relevant allergen. Molecular modeling of Api m 6 revealed a typical fold of canonical protease inhibitors, supporting the putative function of this venom allergen. Although Api m 6 has a highly variant surface charge, its epitope distribution appears to be similar to that of related proteins.
Api m 6 is a honeybee venom component with IgE-sensitizing potential in a fraction of venom-allergic patients. Recombinant Api m 6 can help elucidate individual component-resolved reactivity profiles and increase our understanding of immune responses to low-molecular-weight allergens
免疫球蛋白(Ig)E 介导的蜂毒反应可引起严重的过敏反应,有时甚至致命。详细了解所有毒液成分的过敏潜力对于确保过敏的正确诊断和治疗,并深入了解昆虫毒液的过敏机制是必要的。
我们的目的是对蜜蜂毒液中的一种假定的低分子量丝氨酸蛋白酶抑制剂 Api m 6 进行免疫化学和结构评估。
我们在大肠杆菌和草地贪夜蛾(Sf9)昆虫细胞中重组生产可溶性蛋白形式的 Api m 6。我们还使用酶联免疫吸附试验评估了 2 种原核生产的 Api m 6 变体对毒液敏感患者的特异性 IgE 反应性。此外,我们构建了 Api m 6 的结构模型,并将其与其他蛋白酶抑制剂结构进行比较,以深入了解 Api m 6 的功能。
在 31 名蜜蜂毒液过敏患者的人群中,26%的患者对原核生产的 Api m 6 表现出特异性 IgE 反应,表明其是一种次要但相关的过敏原。Api m 6 的分子建模显示了典型的经典蛋白酶抑制剂折叠,支持了这种毒液过敏原的假定功能。尽管 Api m 6 的表面电荷高度变异,但它的表位分布似乎与相关蛋白相似。
Api m 6 是一种蜜蜂毒液成分,在一部分毒液过敏患者中具有 IgE 致敏潜力。重组 Api m 6 可以帮助阐明个体成分分辨的反应谱,并增加我们对低分子量过敏原免疫反应的理解。