Wilmes Stephan, Beutel Oliver, Li Zhi, Francois-Newton Véronique, Richter Christian P, Janning Dennis, Kroll Cindy, Hanhart Patrizia, Hötte Katharina, You Changjiang, Uzé Gilles, Pellegrini Sandra, Piehler Jacob
Department of Biology, Division of Biophysics, University of Osnabrück, 49074 Osnabrück, Germany.
Institut Pasteur, Cytokine Signaling Unit, Centre National de la Recherche Scientifique URA1961, 75724 Paris, France.
J Cell Biol. 2015 May 25;209(4):579-93. doi: 10.1083/jcb.201412049.
Type I interferons (IFNs) activate differential cellular responses through a shared cell surface receptor composed of the two subunits, IFNAR1 and IFNAR2. We propose here a mechanistic model for how IFN receptor plasticity is regulated on the level of receptor dimerization. Quantitative single-molecule imaging of receptor assembly in the plasma membrane of living cells clearly identified IFN-induced dimerization of IFNAR1 and IFNAR2. The negative feedback regulator ubiquitin-specific protease 18 (USP18) potently interferes with the recruitment of IFNAR1 into the ternary complex, probably by impeding complex stabilization related to the associated Janus kinases. Thus, the responsiveness to IFNα2 is potently down-regulated after the first wave of gene induction, while IFNβ, due to its ∼100-fold higher binding affinity, is still able to efficiently recruit IFNAR1. Consistent with functional data, this novel regulatory mechanism at the level of receptor assembly explains how signaling by IFNβ is maintained over longer times compared with IFNα2 as a temporally encoded cause of functional receptor plasticity.
I型干扰素(IFN)通过由两个亚基IFNAR1和IFNAR2组成的共享细胞表面受体激活不同的细胞反应。我们在此提出一个关于IFN受体可塑性如何在受体二聚化水平上受到调控的机制模型。对活细胞质膜中受体组装进行的定量单分子成像清楚地确定了IFN诱导的IFNAR1和IFNAR2二聚化。负反馈调节因子泛素特异性蛋白酶18(USP18)强烈干扰IFNAR1募集到三元复合物中,可能是通过阻碍与相关Janus激酶有关的复合物稳定化。因此,在第一波基因诱导后,对IFNα2的反应性被强烈下调,而IFNβ由于其约高100倍的结合亲和力,仍能有效募集IFNAR1。与功能数据一致,这种在受体组装水平上的新型调节机制解释了与IFNα2相比,IFNβ的信号传导如何作为功能性受体可塑性的时间编码原因在更长时间内得以维持。