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首页> 外文期刊>Molecular Immunology >Major linear IgE epitopes of mountain cedar pollen allergen Jun a 1 map to the pectate lyase catalytic site.
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Major linear IgE epitopes of mountain cedar pollen allergen Jun a 1 map to the pectate lyase catalytic site.

机译:雪松花粉过敏原Jun a 1的主要线性IgE表位映射到果胶酸裂合酶催化位点。

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摘要

Resolution of the 3D structures and IgE epitopes of allergens may identify common or conserved features of allergens. Jun a 1, the predominant allergen in mountain cedar pollen, was chosen as a model for identifying common structural and functional features among a group of plant allergens. In this study, synthetic, overlapping peptides of Jun a 1 and sera from patients allergic to mountain cedar pollen were used to identify linear epitopes. A 3D model of Jun a 1 was produced using the Bacillus subtiles pectate lyase (PL) as a template and validated with biophysical measurements. This allowed mappings of four IgE binding sites on Jun a 1. Two of the epitopes mapped to turns or loops on the surface of the model structure. The other two epitopes mapped to the beta-sheet region, homologous to the catalytic site of PL. This region of Jun a 1 is highly conserved in the group 1 allergens from other cedar trees as well as microbial PLs. The finding that two out of three major IgE epitopes map to highly conserved catalytic regions of group 1 cedar allergens may help to explain the high degree of cross-reactivity between cedar pollen allergens and might represent a pattern of reactivity common to other allergens with catalytic activity.
机译:过敏原的3D结构和IgE表位的解析可以识别过敏原的共同特征或保守特征。 6月1日,雪松花粉中的主要过敏原被选为识别一组植物过敏原中共同结构和功能特征的模型。在这项研究中,来自对雪松花粉过敏的患者的Jun a 1和血清的合成,重叠肽用于鉴定线性表位。使用枯草芽孢杆菌果胶酸裂合酶(PL)作为模板制作了Jun a 1的3D模型,并通过生物物理测量对其进行了验证。这允许在Jun a 1上映射四个IgE结合位点。两个表位映射到模型结构表面上的匝或环。其他两个表位定位到β-折叠区域,与PL的催化位点同源。 Jun a 1的这一区域在其他雪松和微生物PL的第1组过敏原中高度保守。三个主要IgE表位中的两个映射到第1组雪松变应原的高度保守催化区域的发现可能有助于解释雪松花粉变应原之间的高度交叉反应性,并且可能代表具有催化活性的其他变应原共有的反应性模式。

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