鸡卵白蛋白免疫显性IgE致敏表位精细定位及结构分析。

Yoshinori Mine, Prithy Rupa
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引用次数: 69

摘要

卵清蛋白是蛋清中的一种主要过敏原,可引起儿童ige介导的食物过敏反应。在这项研究中,利用在活化纤维素膜上合成的重叠肽阵列,绘制了卵清蛋白的免疫优势ige结合表位。收集了18例鸡蛋过敏患者的血清,对其膜进行了探测。发现5个不同的区域含有显性过敏性IgE表位,分别为L38T49、D95A102、E191V200、V243E248和G251N260。同时确定了参与IgE抗体结合的关键氨基酸。这些表位主要由疏水氨基酸组成,其次是极性和带电残基,并由-片和-转结构组成。其中一个表位D95A102由单个α -螺旋组成。这些结果为评价卵清蛋白过敏性表位的结构-功能关系和结构特性提供了氨基酸残基的功能作用信息。这也为工程卵白蛋白降低其致敏性提供了一种策略途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fine mapping and structural analysis of immunodominant IgE allergenic epitopes in chicken egg ovalbumin.

Ovalbumin is a major allergen in hen egg white that causes IgE-mediated food allergic reactions in children. In this study, the immunodominant IgE-binding epitopes of ovalbumin were mapped using arrays of overlapping peptides synthesized on activated cellulose membranes. Pooled human sera from 18 patients with egg allergy were used to probe the membrane. Five distinct regions were found to contain dominant allergic IgE epitopes, these being L38T49, D95A102, E191V200, V243E248 and G251N260. The critical amino acids involved in IgE antibody binding were also determined. These epitopes were composed primarily of hydrophobic amino acids, followed by polar and charged residues and being comprised of beta-sheet and beta-turn structures. One epitope, D95A102, consisted of a single alpha-helix. These results provide useful information on the functional role of amino acid residues to evaluate the structure-function relationships and structural properties of allergic epitopes in ovalbumin. They also provide a strategic approach for engineering ovalbumin to reduce its allergenicity.

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