Mellado M, Rodríguez-Frade J M, Kremer L, von Kobbe C, de Ana A M, Mérida I, Martinez-A C
Department of Immunology and Oncology, Centro Nacional de Biotecnología, CSIC, Campus de Cantoblanco, E-28049 Madrid, Spain.
J Biol Chem. 1997 Apr 4;272(14):9189-96. doi: 10.1074/jbc.272.14.9189.
Growth hormone (GH) plays a significant role in normal growth and development. Signaling to the cell is believed to require growth hormone receptor (GHR) dimerization, which occurs following binding of a single growth hormone molecule to each of two receptors. We have developed human growth hormone receptor-specific monoclonal antibodies, one of which was used here to characterize hormone/receptor interactions. This antibody, GHR05, is directed against the hinge spanning subdomains I and II of the receptor's extracellular region. Antibody binding to the cell surface receptor increases upon receptor binding to growth hormone, but not when it binds a mutant form, hGHG120R, which does not trigger receptor activation. Growth hormone binding thus appears to lead to a conformational change in the receptor epitope recognized by GHR05, giving rise to the active dimer configuration, necessary for signal transduction. Using a chimeric receptor-expressing, growth hormone-dependent murine cell line, we find that GHR05 binds to the receptor in the absence of human GH and delivers a signal leading to cell proliferation. Finally, GHR05 treatment of IM-9 cells, a human cell line expressing a functional human GHR, leads to cell proliferation mediated by the generation of GH-specific signals, including phosphorylation of the JAK2 tyrosine kinase and activation of STAT5.
生长激素(GH)在正常生长发育中起着重要作用。据信,向细胞发出信号需要生长激素受体(GHR)二聚化,这在单个生长激素分子与两个受体中的每一个结合后发生。我们开发了人类生长激素受体特异性单克隆抗体,其中一种在此用于表征激素/受体相互作用。这种抗体GHR05针对受体细胞外区域跨亚结构域I和II的铰链区。当受体与生长激素结合时,抗体与细胞表面受体的结合增加,但当它与不触发受体激活的突变形式hGHG120R结合时则不会增加。因此,生长激素结合似乎导致GHR05识别受体表位发生构象变化,产生信号转导所需的活性二聚体构型。使用表达嵌合受体的、依赖生长激素的小鼠细胞系,我们发现GHR05在不存在人GH的情况下与受体结合,并传递导致细胞增殖的信号。最后,用GHR05处理IM-9细胞(一种表达功能性人类GHR的人类细胞系),会导致由GH特异性信号的产生介导的细胞增殖,包括JAK2酪氨酸激酶的磷酸化和STAT5的激活。