Petersen Arnd, Dresselhaus Thomas, Grobe Kay, Becker Wolf-Meinhard
Molecular and Clinical Allergology, Research Center Borstel, Borstel, Germany.
Proteomics. 2006 Dec;6(23):6317-25. doi: 10.1002/pmic.200600173.
Over the last few decades, the cultivation of maize (Zea mays) has strongly increased in Central Europe. We therefore decided to study the allergen composition and the allergenic potency of its pollen in comparison with pollen from timothy grass (Phleum pratense), a typical representative of the native grasses. We found that 65% of the sera reactive to timothy pollen also bound to maize pollen proteins. By using 2-DE immunoblotting, followed by incubation with mAbs directed against known allergens or protein sequencing, those IgE-reactive components were further classified. Although novel, maize-specific pollen allergens could not be found, the presence of crossreacting allergens belonging to groups 1 and 13 (Zea m 1 and 13), both having high IgE prevalence, as well as the presence of the less important group 3 and 12 allergens was found. The structural variability of Zea m 1 and Zea m 13 was determined by sequencing clones isolated from a maize pollen cDNA library. This revealed sequence identities of 72 and 70%, respectively, to the corresponding Phl p 1 and Phl p 13 allergens of timothy grass pollen. IgE-crossreactivity was further studied using immunoblot inhibition tests. Here, timothy pollen extract completely blocked IgE binding to maize, whereas maize pollen extract blocked IgE reactivity to only some timothy pollen allergens.
在过去几十年中,中欧地区玉米(Zea mays)的种植量大幅增加。因此,我们决定研究其花粉的过敏原组成和致敏能力,并与本地典型禾本科植物梯牧草(Phleum pratense)的花粉进行比较。我们发现,65%对梯牧草花粉有反应的血清也能与玉米花粉蛋白结合。通过二维电泳免疫印迹,随后用针对已知过敏原的单克隆抗体孵育或进行蛋白质测序,对那些与IgE反应的成分进行了进一步分类。虽然未发现新的、玉米特异性的花粉过敏原,但发现了属于第1组和第13组(Zea m 1和13)的交叉反应过敏原,这两组过敏原的IgE阳性率都很高,同时还发现了不太重要的第3组和第12组过敏原。通过对从玉米花粉cDNA文库中分离的克隆进行测序,确定了Zea m 1和Zea m 13的结构变异性。结果显示,它们与梯牧草花粉相应的Phl p 1和Phl p 13过敏原的序列同一性分别为72%和70%。使用免疫印迹抑制试验进一步研究了IgE交叉反应性。在此试验中,梯牧草花粉提取物完全阻断了IgE与玉米的结合,而玉米花粉提取物仅阻断了IgE对部分梯牧草花粉过敏原的反应性。