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芹菜主要过敏原Api g 1两种亚型的突变表位分析及交叉反应性

Mutational epitope analysis and cross-reactivity of two isoforms of Api g 1, the major celery allergen.

作者信息

Wangorsch Andrea, Ballmer-Weber Barbara K, Rösch Paul, Holzhauser Thomas, Vieths Stefan

机构信息

Division of Allergology, Paul-Ehrlich-Institut, Paul-Ehrlich-Strasse 51-59, D-63225 Langen, Germany.

出版信息

Mol Immunol. 2007 Apr;44(10):2518-27. doi: 10.1016/j.molimm.2006.12.023. Epub 2007 Jan 30.

Abstract

For better understanding the cross-reactivity between the major birch pollen and celery allergens, Bet v 1 and Api g 1, respectively, putative epitope areas and structurally important positions for IgE-binding of the isoforms Api g 1.01 and Api g 1.02 were point mutated. The IgE binding capacities were measured in ELISA, the IgE cross-reactivity between the isoforms, mutants and Bet v 1 investigated by ELISA-inhibition experiments with serum pools from patients with confirmed celery allergy (DBPCFC). Api g 1.01 displayed a clearly higher frequency and capacity of IgE binding than Api g 1.02. In Api g 1.01, substitution of lysine against glutamic acid at amino acid position 44, a key residue of the Bet v 1 "P-loop", increased the IgE-binding properties. Structural instability due to proline insertion at position 111/112 resulted in loss of IgE binding of Api g 1.01, but not of Api g 1.02. Between Api g 1.01 and Api g 1.02 only partial cross-reactivity was seen. The data suggest that the IgE epitopes of the two isoforms are distinct and that in contrast to Api g 1.01, the "P-loop" region plays an important role for IgE binding of celery allergic subjects to Api g 1.02. Understanding and investigation of the molecular mechanisms in celery allergy is an important step to generate hypoallergenic proteins for safe and efficacious immunotherapy of food allergy.

摘要

为了更好地理解主要的桦树花粉过敏原Bet v 1和芹菜过敏原Api g 1之间的交叉反应性,分别对Api g 1.01和Api g 1.02亚型的假定表位区域以及IgE结合的结构重要位置进行了点突变。通过酶联免疫吸附测定(ELISA)测量IgE结合能力,并用确诊芹菜过敏患者(双盲安慰剂对照食物激发试验)的血清库进行ELISA抑制实验,研究亚型、突变体与Bet v 1之间的IgE交叉反应性。Api g 1.01表现出比Api g 1.02明显更高的IgE结合频率和能力。在Api g 1.01中,将第44位氨基酸的赖氨酸替换为谷氨酸,这是Bet v 1“P环”的一个关键残基,增强了IgE结合特性。由于在第111/112位插入脯氨酸导致的结构不稳定性,致使Api g 1.01失去IgE结合能力,但Api g 1.02没有。在Api g 1.01和Api g 1.02之间仅观察到部分交叉反应性。数据表明,这两种亚型的IgE表位是不同的,并且与Api g 1.01相反,“P环”区域对芹菜过敏受试者的IgE与Api g 1.02的结合起重要作用。了解和研究芹菜过敏的分子机制是生产低变应原性蛋白用于食物过敏安全有效免疫治疗的重要一步。

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