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单体干扰素-γ:α链受体信号复合物的结构与活性

The structure and activity of a monomeric interferon-gamma:alpha-chain receptor signaling complex.

作者信息

Randal M, Kossiakoff A A

机构信息

Graduate Group in Biophysics, University of California, 94000, San Francisco, CA, USA.

出版信息

Structure. 2001 Feb 7;9(2):155-63. doi: 10.1016/s0969-2126(01)00567-6.

Abstract

BACKGROUND

Interferon-gamma (IFN-gamma) is a homodimeric cytokine that exerts its various activities by inducing the aggregation of two different receptors. The alpha chain receptor (IFN-gammaRalpha) is a high affinity receptor that binds to IFN-gamma in a symmetric bivalent manner to form a stable, intermediate 1:2 complex. This intermediate forms a binding template for the subsequent binding of two copies of the second receptor, beta chain receptor (IFN-gammaRbeta), producing the active 1:2:2 signaling complex.

RESULTS

A single chain monovalent variant of IFN-gamma (scIFN-gamma) was constructed and complexed to one copy of the extracellular domain (ECD) of IFN-gammaRalpha. The structure of this 1:1 complex was determined and the hormone-receptor interface shown to be characterized by a number of hydrophilic interactions mediated by several highly ordered water networks. The scIFN-gamma interface consists of segments from each of the monomer chains of the homodimer. The principal hydrophobic contact of the receptor involves a tripeptide segment of the receptor having an unusual and high energy conformation. Despite containing only one binding site for IFN-gammaRalpha, the monovalent scIFN-gamma molecule has significant activity in antiviral biological assays.

CONCLUSIONS

ScIFN-gamma binds the ECD of IFN-gammaRalpha through a highly hydrated interface with an important set of hormone-receptor contacts mediated through structured waters. Although the interface is highly hydrated, it supports tight binding and has a considerable degree of specificity. The biological activity of scIFN-gamma confirms that the scIFN-gamma:IFN-gammaRalpha complex represents a productive intermediate and that it can effectively recruit the other required component, IFN-gammaRbeta, to signal based on the 1:1:1 complex.

摘要

背景

干扰素-γ(IFN-γ)是一种同二聚体细胞因子,通过诱导两种不同受体的聚集发挥其多种活性。α链受体(IFN-γRα)是一种高亲和力受体,以对称二价方式与IFN-γ结合,形成稳定的中间体1:2复合物。该中间体为第二个受体β链受体(IFN-γRβ)的两个拷贝的后续结合形成结合模板,产生活性1:2:2信号复合物。

结果

构建了一种单链单价变体的IFN-γ(scIFN-γ),并使其与IFN-γRα的一个细胞外结构域(ECD)拷贝复合。确定了这种1:1复合物的结构,并且显示激素-受体界面的特征是由几个高度有序的水网络介导的许多亲水相互作用。scIFN-γ界面由同二聚体各单体链的片段组成。受体的主要疏水接触涉及具有异常且高能量构象的受体三肽段。尽管单价scIFN-γ分子仅含有一个IFN-γRα结合位点,但在抗病毒生物学测定中具有显著活性。

结论

ScIFN-γ通过高度水合的界面与IFN-γRα的ECD结合,该界面具有通过结构化水介导的一组重要的激素-受体接触。尽管该界面高度水合,但它支持紧密结合并具有相当程度的特异性。scIFN-γ的生物学活性证实scIFN-γ:IFN-γRα复合物代表一种有活性的中间体,并且它可以有效地募集另一个所需组分IFN-γRβ,基于1:1:1复合物进行信号传导。

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