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首页> 外文期刊>Molecular Immunology >Comprehensive 3D-modeling of allergenic proteins and amino acid composition of potential conformational IgE epitopes.
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Comprehensive 3D-modeling of allergenic proteins and amino acid composition of potential conformational IgE epitopes.

机译:潜在的构象IgE表位的变应原蛋白和氨基酸组成的全面3D建模。

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摘要

Similarities in sequences and 3D structures of allergenic proteins provide vital clues to identify clinically relevant immunoglobulin E (IgE) cross-reactivities. However, experimental 3D structures are available in the Protein Data Bank for only 5% (45/829) of all allergens catalogued in the Structural Database of Allergenic Proteins (SDAP, http://fermi.utmb.edu/SDAP). Here, an automated procedure was used to prepare 3D-models of all allergens where there was no experimentally determined 3D structure or high identity (95%) to another protein of known 3D structure. After a final selection by quality criteria, 433 reliable 3D models were retained and are available from our SDAP Website. The new 3D models extensively enhance our knowledge of allergen structures. As an example of their use, experimentally derived "continuous IgE epitopes" were mapped on 3 experimentally determined structures and 13 of our 3D-models of allergenic proteins. Large portions of these continuous sequences are not entirely on thesurface and therefore cannot interact with IgE or other proteins. Only the surface exposed residues are constituents of "conformational IgE epitopes" which are not in all cases continuous in sequence. The surface exposed parts of the experimental determined continuous IgE epitopes showed a distinct statistical distribution as compared to their presence in typical protein-protein interfaces. The amino acids Ala, Ser, Asn, Gly and particularly Lys have a high propensity to occur in IgE binding sites. The 3D-models will facilitate further analysis of the common properties of IgE binding sites of allergenic proteins.
机译:变应原蛋白的序列和3D结构的相似性为鉴定临床相关的免疫球蛋白E(IgE)交叉反应性提供了重要线索。但是,蛋白质数据库中仅针对变应原蛋白质结构数据库(SDAP,http://fermi.utmb.edu/SDAP)中所有变应原的5%(45/829)提供了实验性3D结构。在这里,自动化程序用于制备所有变应原的3D模型,其中没有实验确定的3D结构或与已知3D结构的另一种蛋白质的高度同一性(95%)。根据质量标准进行最终选择后,保留了433个可靠的3D模型,这些模型可从我们的SDAP网站获得。新的3D模型广泛增强了我们对过敏原结构的了解。作为其用途的一个例子,将实验衍生的“连续IgE表位”定位在3种实验确定的结构和我们的3D模型变应原蛋白上。这些连续序列的大部分不完全在表面上,因此不能与IgE或其他蛋白质相互作用。仅表面暴露的残基是“构象IgE表位”的组成,其在所有情况下都不是连续的。实验确定的连续IgE表位的表面暴露部分与其典型的蛋白质-蛋白质界面中的存在相比,显示出明显的统计分布。氨基酸Ala,Ser,Asn,Gly,尤其是Lys具有很高的发生在IgE结合位点的倾向。 3D模型将有助于进一步分析变应原蛋白的IgE结合位点的共同特性。

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