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鉴定犬 IgE 与犬和人 FcεRIα 相互作用涉及的氨基酸残基。

Identification of amino acid residues involved in the interaction of canine IgE with canine and human FcεRIα.

机构信息

Krebs Institute for Biomolecular Research, Department of Molecular Biology and Biotechnology, University of Sheffield, Firth Court, Western Bank, Sheffield S10 2TN, United Kingdom.

出版信息

Mol Immunol. 2014 Feb;57(2):111-8. doi: 10.1016/j.molimm.2013.08.013. Epub 2013 Sep 28.

Abstract

The interaction of immunoglobulin E (IgE) antibodies with the high-affinity receptor (FcεRI) is important in anti-parasitic immunity and plays a central role in allergic responses. It has been shown that the human Cε3 domains comprise the binding sites for FcεRIα and crystal structure determination has shown that amino acids in four sites contribute to the high affinity of the interaction. The role of homologous residues within canine IgE-Fc, i.e. amino acids located at Cε2-Cε3 interface (residues 332-337), loop BC (residues 362-365), loop DE (residues 393-396), and loop FG (residues 424-427) in canine Cε3 domain were targeted by site-specific mutagenesis. The functional consequences of the mutations to support (i) IgE-mediated, antigen-induced release of β-hexosaminidase from RBL cells transfected with canine or human FcεRIα and (ii) the affinity of the mutants for the soluble extracellular domain of the α-chain expressed in Pichia pastoris were determined by Surface Plasmon Resonance (SPR). Kinetic analysis supports the observed effects of IgE mutations on stimulus secretion coupling. Potential applications of this study, leading to the generation of an IgE variant with a disabled FcεRIα binding site, are discussed.

摘要

免疫球蛋白 E (IgE) 抗体与高亲和力受体 (FcεRI) 的相互作用在抗寄生虫免疫中很重要,并且在过敏反应中起着核心作用。已经表明,人类 Cε3 结构域包含与 FcεRIα 的结合位点,晶体结构测定表明,四个位点的氨基酸有助于相互作用的高亲和力。犬 IgE-Fc 中的同源残基(即位于 Cε2-Cε3 界面(残基 332-337)、BC 环(残基 362-365)、DE 环(残基 393-396)和 FG 环(残基 393-396))的作用 396)和 FG 环(残基 393-396)和 FG 环(残基 424-427)在犬 Cε3 结构域中通过定点诱变进行靶向。突变对支持(i)FcεRIα转染的 RBL 细胞中 IgE 介导的抗原诱导的β-己糖胺酶释放的功能后果,以及(ii)突变体对在巴斯德毕赤酵母中表达的可溶性 α 链胞外结构域的亲和力通过表面等离子体共振(SPR)确定。动力学分析支持 IgE 突变对刺激分泌偶联的观察到的影响。讨论了这项研究的潜在应用,导致产生具有失活的 FcεRIα 结合位点的 IgE 变体。

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