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首页> 外文期刊>Journal of interferon and cytokine research: The official journal of the International Society for Interferon and Cytokine Research >Mapping of IFN-beta epitopes important for receptor binding and biologic activation: comparison of results achieved using antibody-based methods and alanine substitution mutagenesis.
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Mapping of IFN-beta epitopes important for receptor binding and biologic activation: comparison of results achieved using antibody-based methods and alanine substitution mutagenesis.

机译:对受体结合和生物激活很重要的IFN-β表位的定位:使用基于抗体的方法和丙氨酸替代诱变获得的结果的比较。

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摘要

The epitopes important for receptor binding and activation of human interferon-beta1a (IFN-beta1a) were mapped with monoclonal antibodies (mAb), grouped on the basis of their specificity and ability to neutralize biologic activity, and alanine scanning mutagenesis (ASM). The binding properties of nine mAb were defined, using ASM-IFN-beta mutants having alanine substituted at targeted, surface-exposed residues. The results were correlated with the mAb neutralizing potency. Of six mAb that bound either at or adjacent to the IFNAR-2 receptor chain binding site defined by the ASM epitopes, only three had measurable neutralizing activity. Two of these inhibited IFN-beta/IFNAR-2 complex formation, suggesting that steric hindrance of receptor binding constitutes their mechanism of neutralization. However, two mAb that bound to sites remote from the IFNAR-2 binding site on IFN-beta also inhibited IFN-beta/IFNAR-2 complex formation and demonstrated potent neutralizing activity. Thus, neutralizing mAb may employ mechanisms other than steric blockade to inhibit directly the binding of receptor by cytokine, limiting their usefulness as tools to define precise receptor-ligand interaction sites.
机译:用单克隆抗体(mAb)绘制对受体结合和激活人类干扰素-β1a(IFN-β1a)重要的表位,并根据其特异性和中和生物学活性以及丙氨酸扫描诱变(ASM)的能力进行分组。使用在目标表面暴露残基上取代了丙氨酸的ASM-IFN-β突变体,定义了9种mAb的结合特性。结果与mAb中和能力相关。在ASM表位定义的IFNAR-2受体链结合位点处或附近结合的六个mAb中,只有三个具有可测量的中和活性。其中两个抑制了IFN-β/ IFNAR-2复合物的形成,表明受体结合的位阻构成了它们的中和机理。但是,与远离IFN-beta上IFNAR-2结合位点的位点结合的两个mAb也抑制了IFN-beta / IFNAR-2复合物的形成,并显示出强大的中和活性。因此,中和mAb可以采用空间阻滞以外的其他机制直接抑制细胞因子与受体的结合,从而限制了它们作为定义精确的受体-配体相互作用位点的工具的有效性。

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