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Expression of a glycosylphosphatidylinositolanchored ligand, growth hormone, blocks receptor signalling

机译:糖基磷脂酰肌醇锚定配体,生长激素的表达可阻断受体信号传导

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We have investigated the interaction between GH (growth hormone) and GHR (GH receptor). We previously demonstrated that a truncated GHR that possesses a transmembrane domain but no cytoplasmic domain blocks receptor signalling. Based on this observation we investigated the impact of tethering the receptor's extracellular domain to the cell surface using a native lipid GPI (glycosylphosphatidylinositol) anchor. We also investigated the effect of tethering GH, the ligand itself, to the cell surface and demonstrated that tethering either the ecGHR (extracellular domain of GHR) or the ligand itself to the cell membrane via a GPI anchor greatly attenuates signalling. To elucidate the mechanism for this antagonist activity, we used confocal microscopy to examine the fluorescently modified ligand and receptor. GH-GPI was expressed on the cell surface and formed inactive receptor complexes that failed to internalize and blocked receptor activation. In conclusion, contrary to expectation, tethering an agonist to the cell surface can generate an inactive hormone receptor complex that fails to internalize.
机译:我们已经研究了GH(生长激素)和GHR(GH受体)之间的相互作用。先前我们证明了具有跨膜结构域但不存在胞质结构域的截短的GHR可以阻断受体信号传导。基于此观察,我们研究了使用天然脂质GPI(糖基磷脂酰肌醇)锚定将受体的胞外域束缚到细胞表面的影响。我们还研究了将GH(配体本身)束缚到细胞表面的作用,并证明了ecGHR(GHR的胞外域)或配体本身通过GPI锚定束缚在细胞膜上可以大大减弱信号传导。为了阐明这种拮抗剂活性的机制,我们使用共聚焦显微镜检查了荧光修饰的配体和受体。 GH-GPI在细胞表面表达并形成无活性的受体复合物,该复合物无法内化并阻止受体活化。总之,与预期相反,将激动剂束缚在细胞表面会产生无法内化的失活激素受体复合物。

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