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免疫球蛋白E(IgE)Cε2结构域的结构及其在稳定与高亲和力受体FcεRIα复合物中的作用。

The structure of the IgE Cepsilon2 domain and its role in stabilizing the complex with its high-affinity receptor FcepsilonRIalpha.

作者信息

McDonnell J M, Calvert R, Beavil R L, Beavil A J, Henry A J, Sutton B J, Gould H J, Cowburn D

机构信息

The Rockefeller University, New York, New York 10021-6399, USA.

出版信息

Nat Struct Biol. 2001 May;8(5):437-41. doi: 10.1038/87603.

Abstract

The stability of the complex between IgE and its high-affinity receptor, FcepsilonRI, on mast cells is a critical factor in the allergic response. The long half-life of the complex of IgE bound to this receptor in situ ( approximately 2 weeks, compared with only hours for the comparable IgG complex) contributes to the permanent sensitization of these cells and, hence, to the immediate response to allergens. Here we show that the second constant domain of IgE, Cepsilon2, which takes the place of the flexible hinge in IgG, contributes to this long half-life. When the Cepsilon2 domain is deleted from the IgE Fc fragment, leaving only the Cepsilon3 and Cepsilon4 domains (Cepsilon3-4 fragment), the rate of dissociation from the receptor is increased by greater than 1 order of magnitude. We report the structure of the Cepsilon2 domain by heteronuclear NMR spectroscopy and show by chemical shift perturbation that it interacts with FcepsilonRIalpha. By sedimentation equilibrium we show that the Cepsilon2 domain binds to the Cepsilon3-4 fragment of IgE. These interactions of Cepsilon2 with both FcepsilonRIalpha and Cepsilon3-4 provide a structural explanation for the exceptionally slow dissociation of the IgE-FcepsilonRIalpha complex.

摘要

免疫球蛋白E(IgE)与其在肥大细胞上的高亲和力受体FcepsilonRI之间复合物的稳定性是过敏反应中的一个关键因素。IgE与该受体原位结合形成的复合物半衰期很长(约2周,相比之下,类似的IgG复合物半衰期仅数小时),这导致这些细胞永久致敏,进而引发对过敏原的即时反应。在此我们表明,IgE的第二个恒定结构域Cepsilon2取代了IgG中的柔性铰链区,对这种长半衰期有促进作用。当从IgE Fc片段中删除Cepsilon2结构域,仅留下Cepsilon3和Cepsilon4结构域(Cepsilon3 - 4片段)时,其与受体的解离速率增加超过1个数量级。我们通过异核核磁共振光谱法报道了Cepsilon2结构域的结构,并通过化学位移扰动表明它与FcepsilonRIalpha相互作用。通过沉降平衡实验我们表明,Cepsilon2结构域与IgE的Cepsilon3 - 4片段结合。Cepsilon2与FcepsilonRIalpha以及Cepsilon3 - 4的这些相互作用为IgE - FcepsilonRIalpha复合物异常缓慢的解离提供了结构上的解释。

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