Hoffmann-Sommergruber K, Ferris R, Pec M, Radauer C, O'Riordain G, Laimer Da Camara Machado M, Scheiner O, Breiteneder H
Department of Pathophysiology, University of Vienna, Vienna, Austria.
Int Arch Allergy Immunol. 2000 Jun;122(2):115-23. doi: 10.1159/000024367.
The association of pollinosis with allergy to plant foods occurs in up to 70% of tree pollen-allergic patients. In recent years, some of the relevant cross-reacting proteins have been characterized at the molecular and immunological level. Api g 1 has been identified as the celery homologue of the major birch pollen allergen, Bet v 1. Although a number of Bet v 1 isoforms have been characterized from birch pollen, little is known about isoforms of food allergens and their allergenic features.
Api g 1.0201, an isoform of Api g 1, was isolated from a cDNA library, cloned and sequenced. The cDNA was expressed in Escherichia coli and the purified recombinant protein was tested in immunoblots.
Api g 1.0201 displays 72% sequence similarity to the previously identified Api g 1.0101 and consists of 159 amino acid residues. The sequence of Api g 1.0201 has five additional amino acid residues at the carboxy-terminus as compared to Api g 1.0101. Purified recombinant Api g 1.0201 is recognized by IgE from the sera of celery-allergic patients, as well as by the murine monoclonal anti-Bet v 1 antibody. In general, this isoform displays a weaker IgE-binding capacity than Api g 1.0101, as concluded from immunoblotting experiments. Results from inhibition assays revealed that IgE-binding to Api g 1.0201 is only slightly reduced by preincubation with either purified recombinant Api g 1.0101 or purified recombinant Bet v 1a. Total inhibition was only achieved when using purified natural Bet v 1.
At present, little is known about the IgE-binding capacity of isoforms of Bet v 1 homologues of food allergens. Identification and characterization of such isoforms may help to contribute to a better understanding of food allergy and the observed cross-reactivity to pollen allergy.
高达70%的对树花粉过敏的患者存在花粉症与植物性食物过敏的关联。近年来,一些相关的交叉反应蛋白已在分子和免疫水平上得到表征。Api g 1已被鉴定为主要桦树花粉过敏原Bet v 1的芹菜同源物。尽管已从桦树花粉中鉴定出多种Bet v 1亚型,但对于食物过敏原的亚型及其致敏特性知之甚少。
从cDNA文库中分离出Api g 1的一个亚型Api g 1.0201,进行克隆和测序。该cDNA在大肠杆菌中表达,并对纯化的重组蛋白进行免疫印迹检测。
Api g 1.0201与先前鉴定的Api g 1.0101显示出72%的序列相似性,由159个氨基酸残基组成。与Api g 1.0101相比,Api g 1.0201的序列在羧基末端有五个额外的氨基酸残基。纯化的重组Api g 1.0201可被芹菜过敏患者血清中的IgE以及鼠单克隆抗Bet v 1抗体识别。一般来说,从免疫印迹实验得出,该亚型的IgE结合能力比Api g 1.0101弱。抑制试验结果表明,用纯化的重组Api g 1.0101或纯化的重组Bet v 1a预孵育,仅使IgE与Api g 1.0201的结合略有减少。只有使用纯化的天然Bet v 1才能实现完全抑制。
目前,对于食物过敏原中Bet v 1同源物亚型的IgE结合能力知之甚少。鉴定和表征此类亚型可能有助于更好地理解食物过敏以及观察到的与花粉过敏的交叉反应。