Ketteler Robin, Heinrich Achim C, Offe Julia K, Becker Verena, Cohen Jacob, Neumann Drorit, Klingmüller Ursula
Max-Planck-Institute of Immunobiology, 79108 Freiburg, Germany.
J Biol Chem. 2002 Jul 19;277(29):26547-52. doi: 10.1074/jbc.M202287200. Epub 2002 May 7.
Signaling through hematopoietic cytokine receptors such as the erythropoietin receptor (EpoR) depends on the activation of a receptor-bound Janus kinase (JAK) and tyrosine phosphorylation of the cytoplasmic domain. To visualize the EpoR and elucidate structural requirements coordinating signal transduction, we probed the EpoR by inserting the green fluorescent protein (GFP) at various positions. We show that insertion of GFP in proximity to the transmembrane domain, either in the extracellular or the cytoplasmic domain, results in EpoR-GFP receptors incompetent to elicit biological responses in a factor-dependent cell line or in erythroid progenitor cells. Surprisingly, a receptor harboring GFP insertion in the middle of the cytoplasmic domain, and thereby separating the JAK2 binding site from the tyrosine residues, is capable of supporting signal transduction in response to ligand binding. Comparable with the wild type EpoR, but more efficient than a C-terminal EpoR-GFP fusion, this chimeric receptor promotes the maturation of erythroid progenitor cells and is localized in punctated endosome-like structures. We conclude that the extracellular, transmembrane, and membrane-proximal segment of the cytoplasmic domain form a rigid structural entity whose precise orientation is essential for the initiation of signal transduction, whereas the cytoplasmic domain possesses flexibility in adopting an activated conformation.
通过造血细胞因子受体(如促红细胞生成素受体,EpoR)进行的信号传导依赖于受体结合的Janus激酶(JAK)的激活以及细胞质结构域的酪氨酸磷酸化。为了可视化EpoR并阐明协调信号转导的结构要求,我们通过在不同位置插入绿色荧光蛋白(GFP)来探测EpoR。我们发现,在跨膜结构域附近的细胞外或细胞质结构域中插入GFP,会导致EpoR-GFP受体在因子依赖性细胞系或红系祖细胞中无法引发生物学反应。令人惊讶的是,在细胞质结构域中间插入GFP的受体,从而将JAK2结合位点与酪氨酸残基分开,能够在配体结合时支持信号转导。与野生型EpoR相当,但比C末端EpoR-GFP融合体更有效,这种嵌合受体促进红系祖细胞的成熟,并定位于点状的内体样结构中。我们得出结论,细胞质结构域的细胞外、跨膜和膜近端片段形成一个刚性结构实体,其精确取向对于信号转导的启动至关重要,而细胞质结构域在采用激活构象时具有灵活性。