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Thermal sensitivity and flexibility of the Cε3 domains in immunoglobulin E

机译:免疫球蛋白E中Cε3结构域的热敏感性和柔性

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摘要

Immunoglobulin E (IgE) is the antibody that plays a central role in the mechanisms of allergic diseases such as asthma. Interactions with its receptors, FcεRI on mast cells and CD23 on B cells, are mediated by the Fc region, a dimer of the Cε2, Cε3 and Cε4 domains. A sub-fragment lacking the Cε2 domains, Fcε3–4, also binds to both receptors, although receptor binding almost exclusively involves the Cε3 domains. This domain also contains the N-linked glycosylation site conserved in other isotypes. We report here the crystal structures of IgE-Fc and Fcε3–4 at the highest resolutions yet determined, 1.75 Å and 2.0 Å respectively, revealing unprecedented detail regarding the carbohydrate and its interactions with protein domains. Analysis of the crystallographic B-factors of these, together with all earlier IgE-Fc and Fcε3–4 structures, shows that the Cε3 domains exhibit the greatest intrinsic flexibility and quaternary structural variation within IgE-Fc. Intriguingly, both well-ordered carbohydrate and disordered polypeptide can be seen within the same Cε3 domain. A simplified method for comparing the quaternary structures of the Cε3 domains in free and receptor-bound IgE-Fc structures is presented, which clearly delineates the FcεRI and CD23 bound states. Importantly, differential scanning fluorimetric analysis of IgE-Fc and Fcε3–4 identifies Cε3 as the domain most susceptible to thermally-induced unfolding, and responsible for the characteristically low melting temperature of IgE.
机译:免疫球蛋白E(IgE)是在过敏性疾病(例如哮喘)的机制中起关键作用的抗体。与它的受体,肥大细胞上的FcεRI和B细胞上的CD23的相互作用是由Fc区介导的,该区是Cε2,Cε3和Cε4域的二聚体。缺少Cε2结构域的亚片段Fcε3-4也会与两个受体结合,尽管受体结合几乎只涉及Cε3结构域。该结构域还包含在其他同种型中保守的N-连接的糖基化位点。我们在此报告IgE-Fc和Fcε3-4的晶体结构,但尚未确定的最高分辨率分别为1.75Å和2.0Å,揭示了关于碳水化合物及其与蛋白质结构域相互作用的前所未有的细节。对这些晶体的B因子以及所有较早的IgE-Fc和Fcε3-4结构的分析表明,Cε3结构域在IgE-Fc中显示出最大的固有柔性和四级结构变异。有趣的是,在同一Cε3结构域中可以看到有序的碳水化合物和无序的多肽。提出了一种比较游离和受体结合的IgE-Fc结构中Cε3域的四级结构的简化方法,该方法清楚地描绘了FcεRI和CD23的结合状态。重要的是,对IgE-Fc和Fcε3-4的差示扫描荧光分析表明Cε3是最易受热诱导展开的区域,并导致IgE的特征性低熔点。

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