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Mutational and structural analysis of the binding interface between type I interferons and their receptor Ifnar2.

机译:I型干扰素与其受体Ifnar2之间结合界面的突变和结构分析。

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Type I interferons (IFN) exert pleiotropic activities through binding to two cell surface receptors, ifnar1 and ifnar2. We are investigating the biophysical basis of IFN signaling by characterizing the complex of the extra-cellular domain of ifnar2 (ifnar2-EC) with IFNs on the level of purified recombinant proteins in vitro. Here, we present a detailed mutational study on the functional epitopes on both IFN and ifnar2. Kinetic and thermodynamic parameters were determined by label-free heterogeneous phase detection. On IFNalpha2, a relatively small functional epitope comprising ten amino acid residues was localized, which is nearly entirely formed by residues on the AB loop. Two hot-spot residues, L30 and R33, account for two-thirds of the total interaction energy. Comparing the anti-viral potency of the various mutants to the binding affinity towards ifnar2 revealed a proportional correlation between the two, suggesting a rate-limiting role of ifnar2 binding in IFN signaling. On ifnar2, residues T46, I47 and M48 were identified as hot-spots in the interaction with IFNalpha2. For another ten residues on ifnar2, significant contribution of interaction energy was determined. Based on these data, the functional epitope on ifnar2 was defined according to a homology model based on other members of the class II hCR family in good agreement with the complementary functional epitope on IFNalpha2. Although IFNalpha2 and IFNbeta bind competitively to the same functional epitope, mutational analysis revealed distinct centers of binding for these IFNs on ifnar2. This small shift of the binding site may result in different angular orientation, which can be critically coupled to cytoplasmic signaling. Copyright 1999 Academic Press.
机译:I型干扰素(IFN)通过与两个细胞表面受体ifnar1和ifnar2结合而发挥多效活性。我们正在通过在体外纯化重组蛋白的水平上表征ifnar2(ifnar2-EC)的细胞外结构域与IFN的复合物,研究IFN信号传导的生物物理基础。在这里,我们对IFN和ifnar2的功能性抗原决定簇进行详细的突变研究。动力学和热力学参数由无标记异相检测确定。在IFNalpha2上,定位了一个相对较小的包含10个氨基酸残基的功能表位,该表位几乎完全由AB环上的残基形成。 L30和R33这两个热点残基占总相互作用能的三分之二。将各种突变体的抗病毒效力与对ifnar2的结合亲和力进行比较,发现两者之间存在比例相关性,这表明ifnar2结合在IFN信号传导中具有限速作用。在ifnar2上,残基T46,I47和M48被确定为与IFNalpha2相互作用的热点。对于ifnar2上的另外十个残基,确定了相互作用能的显着贡献。基于这些数据,根据基于II类hCR家族其他成员的同源性模型,与IFNalpha2上的互补功能性表位有很好的一致性,在ifnar2上定义了功能性表位。尽管IFNalpha2和IFNbeta与相同的功能表位竞争性结合,但突变分析显示在ifnar2上这些IFN的结合中心不同。结合位点的这种小位移可能导致不同的角度方向,该角度方向可能与细胞质信号转导关键耦合。版权所有1999,学术出版社。

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