Kumar K G Suresh, Varghese Bentley, Banerjee Anamika, Baker Darren P, Constantinescu Stefan N, Pellegrini Sandra, Fuchs Serge Y
Department of Animal Biology and Mari Lowe Center for Comparative Oncology Research, University of Pennsylvania, Philadelphia, Pennsylvania 19104, USA.
J Biol Chem. 2008 Jul 4;283(27):18566-72. doi: 10.1074/jbc.M800991200. Epub 2008 May 12.
Linear endocytic motifs of signaling receptors as well as their ubiquitination determine the rate of ligand-induced endocytosis that mediates down-regulation of these receptors and restricts the magnitude and duration of their respective signal transduction pathways. We previously hypothesized that, in the absence of its cognate ligand, type I interferon (IFN), the IFNalpha receptor chain 1 (IFNAR1) receptor chain is protected from basal endocytosis by a hypothetical masking complex that prevents the Tyr-based endocytic motif within IFNAR1 from interacting with components of the adaptin protein complex 2 (AP2). Here we identify a member of the Janus kinase (Jak) family, Tyk2, as a component of such a masking complex. In the absence of ligand or of receptor chain ubiquitination, binding of Janus kinase Tyk2 within the proximity of the Tyr-based linear motif of IFNAR1 is required to prevent IFNAR1 internalization and to maintain its cell surface expression. Furthermore, interaction experiments revealed that Tyk2 physically shields this Tyr-based motif from the recognition by the AP50 subunit of AP2. These data delineate a long-sought ligand- and ubiquitin-independent mechanism by which Tyk2 contributes to both the regulation of total IFNAR1 levels as well as the regulation of the cell surface density of this receptor chain.
信号受体的线性内吞基序及其泛素化决定了配体诱导的内吞作用的速率,该内吞作用介导这些受体的下调,并限制其各自信号转导途径的强度和持续时间。我们之前推测,在缺乏其同源配体I型干扰素(IFN)的情况下,IFNα受体链1(IFNAR1)受体链受到一种假设的掩盖复合物的保护,免受基础内吞作用的影响,该复合物可防止IFNAR1内基于酪氨酸的内吞基序与衔接蛋白复合物2(AP2)的组分相互作用。在此,我们鉴定出Janus激酶(Jak)家族的一个成员Tyk2是这种掩盖复合物的一个组分。在缺乏配体或受体链泛素化的情况下,需要Janus激酶Tyk2在IFNAR1基于酪氨酸的线性基序附近结合,以防止IFNAR1内化并维持其细胞表面表达。此外,相互作用实验表明,Tyk2可物理性地保护这个基于酪氨酸的基序不被AP2的AP50亚基识别。这些数据描绘了一种长期寻找的不依赖配体和泛素的机制,通过该机制Tyk2对IFNAR1总水平的调节以及该受体链细胞表面密度的调节均有贡献。