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Determination of the human type I interferon receptor binding site on human interferon-α2 by cross saturation and an NMR-based model of the complex

机译:通过交叉饱和和基于NMR的复合物模型确定人干扰素-α2上人I型干扰素受体的结合位点

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摘要

Type I interferons (IFNs) are a family of homologous helical cytokines that exhibit pleiotropic effects on a wide variety of cell types, including antiviral activity and antibacterial, antiprozoal, immunomodulatory, and cell growth regulatory functions. Consequently, IFNs are the human proteins most widely used in the treatment of several kinds of cancer, hepatitis C, and multiple sclerosis. All type I IFNs bind to a cell surface receptor consisting of two subunits, IFNAR1 and IFNAR2, associating upon binding of interferon. The structure of the extracellular domain of IFNAR2 (R2-EC) was solved recently. Here we study the complex and the binding interface of IFNα2 with R2-EC using multidimensional NMR techniques. NMR shows that IFNα2 does not undergo significant structural changes upon binding to its receptor, suggesting a lock-and-key mechanism for binding. Cross saturation experiments were used to determine the receptor binding site upon IFNα2. The NMR data and previously published mutagenesis data were used to derive a docking model of the complex with an RMSD of 1 Å, and its well-defined orientation between IFNα2 and R2-EC and the structural quality greatly improve upon previously suggested models. The relative ligand–receptor orientation is believed to be important for interferon signaling and possibly one of the parameters that distinguish the different IFN I subtypes. This structural information provides important insight into interferon signaling processes and may allow improvement in the development of therapeutically used IFNs and IFN-like molecules.
机译:I型干扰素(IFN)是同源螺旋细胞因子家族,对多种细胞类型表现出多效作用,包括抗病毒活性以及抗菌,抗原生动物,免疫调节和细胞生长调节功能。因此,IFN是最广泛用于治疗几种癌症,丙型肝炎和多发性硬化症的人类蛋白质。所有I型IFN都与细胞表面受体结合,后者由两个亚基IFNAR1和IFNAR2组成,在干扰素结合后结合。 IFNAR2(R2-EC)的胞外域的结构最近得到解决。在这里,我们使用多维NMR技术研究IFNα2与R2-EC的复合物和结合界面。 NMR显示,IFNα2与其受体结合后不会发生明显的结构变化,表明结合的锁钥机制。交叉饱和实验用于确定IFNα2后的受体结合位点。 NMR数据和先前发表的诱变数据用于推导RMSD为1的复合物的对接模型,其在IFNα2和R2-EC之间的明确定义的取向以及结构质量大大优于先前建议的模型。据信相对的配体-受体取向对干扰素信号传导很重要,可能是区分不同IFN I亚型的参数之一。该结构信息提供了对干扰素信号传导过程的重要见解,并可能改善治疗用IFN和IFN-like分子的发育。

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