Department of Animal Biology, University of Pennsylvania, 380 S. University Avenue, Hill 316, Philadelphia, PA 19104-4539, USA.
Mol Cell Biol. 2009 Dec;29(24):6401-12. doi: 10.1128/MCB.00478-09. Epub 2009 Oct 5.
Phosphorylation of the degron of the IFNAR1 chain of the type I interferon (IFN) receptor triggers ubiquitination and degradation of this receptor and, therefore, plays a crucial role in negative regulation of IFN-alpha/beta signaling. Besides the IFN-stimulated and Jak activity-dependent pathways, a basal ligand-independent phosphorylation of IFNAR1 has been described and implicated in downregulating IFNAR1 in response to virus-induced endoplasmic reticulum (ER) stress. Here we report purification and characterization of casein kinase 1alpha (CK1alpha) as a bona fide major IFNAR1 kinase that confers basal turnover of IFNAR1 and cooperates with ER stress stimuli to mediate phosphorylation-dependent degradation of IFNAR1. Activity of CK1alpha was required for phosphorylation and downregulation of IFNAR1 in response to ER stress and viral infection. While many forms of CK1 were capable of phosphorylating IFNAR1 in vitro, human CK1alpha and L-CK1 produced by the protozoan Leishmania major were also capable of increasing IFNAR1 degron phosphorylation in cells. Expression of leishmania CK1 in mammalian cells stimulated the phosphorylation-dependent downregulation of IFNAR1 and attenuated its signaling. Infection of mammalian cells with L. major modestly decreased IFNAR1 levels and attenuated cellular responses to IFN-alpha in vitro. We propose a role for mammalian and parasite CK1 enzymes in regulating IFNAR1 stability and type I IFN signaling.
IFN 受体 I 型干扰素(IFN)链的降解物的磷酸化触发该受体的泛素化和降解,因此在 IFN-α/β信号转导的负调控中发挥关键作用。除了 IFN 刺激和 Jak 活性依赖性途径外,还描述了 IFNAR1 的基础配体非依赖性磷酸化,并且在响应病毒诱导的内质网(ER)应激下调 IFNAR1 中起作用。在这里,我们报告了酪蛋白激酶 1alpha(CK1alpha)的纯化和表征,它是一种真正的主要 IFNAR1 激酶,赋予 IFNAR1 的基础周转率,并与 ER 应激刺激合作介导 IFNAR1 的磷酸依赖性降解。CK1alpha 的活性对于 ER 应激和病毒感染后 IFNAR1 的磷酸化和下调是必需的。虽然许多形式的 CK1 都能够在体外磷酸化 IFNAR1,但人类 CK1alpha 和原生动物利什曼原虫产生的 L-CK1 也能够在细胞中增加 IFNAR1 降解物的磷酸化。哺乳动物细胞中利什曼 CK1 的表达刺激了 IFNAR1 的磷酸依赖性下调,并减弱了其信号转导。利什曼原虫感染哺乳动物细胞可适度降低 IFNAR1 水平,并减弱其体外对 IFN-α的细胞反应。我们提出哺乳动物和寄生虫 CK1 酶在调节 IFNAR1 稳定性和 I 型 IFN 信号转导中的作用。