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低亲和力受体CD23/FcεRII凝集素结构域与人免疫球蛋白E的Fcε3-4片段之间的相互作用

Interaction of the low-affinity receptor CD23/Fc epsilonRII lectin domain with the Fc epsilon3-4 fragment of human immunoglobulin E.

作者信息

Shi J, Ghirlando R, Beavil R L, Beavil A J, Keown M B, Young R J, Owens R J, Sutton B J, Gould H J

机构信息

The Randall Institute, King's College London, United Kingdom.

出版信息

Biochemistry. 1997 Feb 25;36(8):2112-22. doi: 10.1021/bi961231e.

Abstract

CD23/Fc epsilonRII, the low-affinity receptor for IgE, is a multifunctional protein of importance in blood cell development and the immune system. We have studied the interaction of CD23 with IgE in solution using hydrodynamic methods applied to recombinant fragments of both ligands: sCD23, corresponding to the soluble lectin domain of CD23, and Fc epsilon3-4, a dimer of the C epsilon3-C epsilon4 sequence of IgE. The hydrodynamic, spectroscopic, and biological properties of these fragments suggest that they have a fully native structure. Sedimentation equilibrium studies on mixtures of sCD23 and Fc epsilon3-4 indicate that IgE has two binding sites for CD23, each characterized by affinities of approximately 10(5) M(-1). Analysis of the sedimentation as a function of temperature allows conclusions to be drawn about the thermodynamics of binding at the two sites. Binding at the first site is characterized by large changes in enthalpy (delta H(degree)To = -2.1 +/- 3.3 kcal mol(-1)) and heat capacity (delta Cp(degree) = -320 +/- 320 cal mol(-1) K(-1)), whereas binding at the second site is characterized by small changes in enthalpy (delta H(degree)To = 0.1 +/- 5.6 kcal mol(-1)) and heat capacity (delta Cp(degree) = -140 +/- 550 cal mol(-1) K(-1)). In native CD23, there are two or three lectin domains, associated through an alpha-helical coiled-coil stalk. The predicted structure of the CD23 oligomers and symmetry considerations rule out the possibility of two lectin domains from one oligomer binding to identical sites in IgE. The notion of two types of interaction in the 2:1 complex between CD23 and IgE is consistent with the thermodynamic data presented.

摘要

CD23/FcεRII是IgE的低亲和力受体,是一种在血细胞发育和免疫系统中具有重要作用的多功能蛋白。我们利用流体动力学方法研究了溶液中CD23与IgE的相互作用,该方法应用于两种配体的重组片段:sCD23,对应于CD23的可溶性凝集素结构域;Fcε3-4,IgE的Cε3-Cε4序列的二聚体。这些片段的流体动力学、光谱学和生物学特性表明它们具有完全天然的结构。对sCD23和Fcε3-4混合物的沉降平衡研究表明,IgE有两个与CD23结合的位点,每个位点的亲和力约为10⁵ M⁻¹。分析沉降随温度的变化可以得出关于两个位点结合热力学的结论。第一个位点的结合特征是焓(ΔH°To = -2.1 ± 3.3 kcal mol⁻¹)和热容(ΔCp° = -320 ± 320 cal mol⁻¹ K⁻¹)有较大变化,而第二个位点的结合特征是焓(ΔH°To = 0.1 ± 5.6 kcal mol⁻¹)和热容(ΔCp° = -140 ± 550 cal mol⁻¹ K⁻¹)有较小变化。在天然CD23中,有两个或三个凝集素结构域,通过α-螺旋卷曲螺旋茎相连。CD23寡聚体的预测结构和对称性考虑排除了一个寡聚体的两个凝集素结构域与IgE中相同位点结合的可能性。CD23与IgE之间2:1复合物中两种相互作用类型的概念与所呈现的热力学数据一致。

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