Waldhoer Maria, Casarosa Paola, Rosenkilde Mette M, Smit Martine J, Leurs Rob, Whistler Jennifer L, Schwartz Thue W
Laboratory for Molecular Pharmacology, Panum Institute, University of Copenhagen, Copenhagen DK-2200, Denmark.
J Biol Chem. 2003 May 23;278(21):19473-82. doi: 10.1074/jbc.M213179200. Epub 2003 Mar 18.
US28 is one of four 7 transmembrane (7TM) chemokine receptors encoded by human cytomegalovirus and has been shown to both signal and endocytose in a ligand-independent, constitutively active manner. Here we show that the constitutive activity and constitutive endocytosis properties of US28 are separable entities in this viral chemokine receptor. We generated chimeric and mutant US28 proteins that were altered in either their constitutive endocytic (US28 Delta 300, US28 Delta 317, US28-NK1-ctail, and US28-ORF74-ctail) or signaling properties (US28R129A). By using this series of mutants, we show that the cytoplasmic tail domain of US28 per se regulates receptor endocytosis, independent of the signaling ability of the core domain of US28. The constitutive endocytic property of the US28 c-tail was transposable to other 7TM receptors, the herpes virus 8-encoded ORF74 and the tachykinin NK1 receptor (ORF74-US28-ctail and NK1-US28-ctail). Deletion of the US28 C terminus resulted in reduced constitutive endocytosis and consequently enhanced signaling capacity of all receptors tested as assessed by inositol phosphate turnover, NF-kappa B, and cAMP-responsive element-binding protein transcription assays. We further show that the constitutive endocytic property of US28 affects the action of its chemokine ligand fractalkine/CX3CL1 and show that in the absence of the US28 C terminus, fractalkine/CX3CL1 acts as an agonist on US28. This demonstrates for the first time that the endocytic properties of a 7TM receptor can camouflage the agonist properties of a ligand.
US28是人类巨细胞病毒编码的4种7次跨膜(7TM)趋化因子受体之一,已被证明能以不依赖配体的组成性激活方式进行信号传导和内吞作用。在此,我们表明在这种病毒趋化因子受体中,US28的组成性活性和组成性内吞特性是可分离的实体。我们构建了嵌合和突变的US28蛋白,其组成性内吞(US28 Delta 300、US28 Delta 317、US28-NK1-ctail和US28-ORF74-ctail)或信号传导特性(US28R129A)发生了改变。通过使用这一系列突变体,我们表明US28的胞质尾域本身调节受体内吞作用,独立于US28核心域的信号传导能力。US28 c尾的组成性内吞特性可转移到其他7TM受体,即疱疹病毒8编码的ORF74和速激肽NK1受体(ORF74-US28-ctail和NK1-US28-ctail)。通过肌醇磷酸周转、NF-κB和cAMP反应元件结合蛋白转录分析评估,缺失US28 C末端导致所有测试受体的组成性内吞减少,从而增强了信号传导能力。我们进一步表明,US28的组成性内吞特性影响其趋化因子配体fractalkine/CX3CL1的作用,并表明在没有US28 C末端的情况下,fractalkine/CX3CL1对US28起激动剂作用。这首次证明了7TM受体的内吞特性可以掩盖配体的激动剂特性。