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首页> 外文期刊>The Journal of biological chemistry >Structural and Immunologic Characterization of Ara h 1, a Major Peanut Allergen
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Structural and Immunologic Characterization of Ara h 1, a Major Peanut Allergen

机译:ARA H 1的结构和免疫表征,主要的花生过敏原

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Allergic reactions to peanuts and tree nuts are major causes of anaphylaxis in the United States. We compare different properties of natural and recombinant versions of Ara h 1, a major peanut allergen, through structural, immunologic, and bioinformatics analyses. Small angle x-ray scattering studies show that natural Ara h 1 forms higher molecular weight aggregates in solution. In contrast, the full-length recombinant protein is partially unfolded and exists as a monomer. The crystal structure of the Ara h 1 core (residues 170–586) shows that the central part of the allergen has a bicupin fold, which is in agreement with our bioinformatics analysis. In its crystalline state, the core region of Ara h 1 forms trimeric assemblies, while in solution the protein exists as higher molecular weight assemblies. This finding reveals that the residues forming the core region of the protein are sufficient for formation of Ara h 1 trimers and higher order oligomers. Natural and recombinant variants of proteins tested in in vitro gastric and duodenal digestion assays show that the natural protein is the most stable form, followed by the recombinant Ara h 1 core fragment and the full-length recombinant protein. Additionally, IgE binding studies reveal that the natural and recombinant allergens have different patterns of interaction with IgE antibodies. The molecular basis of cross-reactivity between vicilin allergens is also elucidated.
机译:对花生和树坚果的过敏反应是美国过敏反应的主要原因。我们通过结构,免疫系统和生物信息学分析比较ARA H 1的天然和重组版的不同性质和重组版本的ARA H 1,主要的花生过敏原。小角度X射线散射研究表明,天然ARA H 1在溶液中形成更高的分子量聚集体。相反,全长重组蛋白部分展开并作为单体存在。 ARA H 1核的晶体结构(残留物170-586)表明过敏原的中心部分具有双普蛋白折叠,这与我们的生物信息学分析一致。在其结晶状态下,ARA H 1的核心区域形成三聚体组件,同时在溶液中存在蛋白质作为更高的分子量组件。该发现表明,形成蛋白质的核心区域的残基足以形成ARA H 1三聚体和高阶低聚物。在体外胃和十二指肠消化测定中测试的蛋白质的天然和重组变体表明,天然蛋白质是最稳定的形式,其次是重组ARA H1核碎片和全长重组蛋白。此外,IgE结合研究表明,天然和重组过敏原具有与IgE抗体不同的相互作用模式。均植物素过敏原之间的交叉反应性的分子基础也阐明。

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