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An attempt to define allergen-specific molecular surface features: a bioinformatic approach

机译:定义过敏原特异性分子表面特征的尝试:一种生物信息学方法

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Allergens are proteins that elicit T helper lymphocyte type 2 (Th2) responses culminating in IgE antibody production and allergic disease. However, we have no answer to the fundamental question of why certain proteins are allergens, while others are not. We hypothesized that analysis of the surface of diverse allergens may reveal common structural features which might enable them to be recognized as Th2-inducing antigens by cells of the innate immune system. We have therefore used the ConSurf server to search for allergen-specific motifs. This has enabled us to identify residue conservation patterns in the homo-logues of Ara t 8 (plant profilin), Act c 1 (actinidin), Bet v 1 (plant pathogenesis-related protein) and Ves v 5 (venom allergen). The results demonstrate the presence of allergen-specific patches consisting of an unusually high proportion of surface-exposed hydrophobic residues. The patches that have been identified may represent molecular patterns recognizable by cells of the innate immune system.
机译:过敏原是引起2型T辅助淋巴细胞反应(Th2)的蛋白质,最终导​​致IgE抗体产生和过敏性疾病。但是,对于某些蛋白质为何是过敏原而其他蛋白质却不是这样的根本问题,我们没有任何答案。我们假设对各种过敏原表面的分析可能揭示了共同的结构特征,这些特征可能使它们被先天免疫系统的细胞识别为Th2诱导抗原。因此,我们已使用ConSurf服务器搜索过敏原特定的基序。这使我们能够在Ara t 8(植物蛋白原),Act c 1(肌动蛋白),Bet v 1(植物致病相关蛋白)和Ves v 5(毒物过敏原)的同系物中鉴定残基保守模式。结果表明存在由异常高比例的表面暴露的疏水残基组成的变应原特异性贴剂。已识别的补丁可能代表先天免疫系统细胞可识别的分子模式。

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