Wang X, Darus C J, Xu B C, Kopchick J J
Edison Biotechnology Institute, Ohio University, Athens 45701, USA.
Mol Endocrinol. 1996 Oct;10(10):1249-60. doi: 10.1210/mend.10.10.9121492.
To determine whether GH receptor (GHR) cytoplasmic tyrosine residue(s) and tyrosine phosphorylation are required for signal transduction, we have substituted the eight porcine (p) GHR cytoplasmic tyrosines with phenylalanine individually or in a stepwise manner from the C terminus. Conversely, the eight tyrosines were individually regenerated in a non-tyrosine-containing pGHR analog. Mutated pGHR cDNAs were transfected into mouse L cells (MLCs) and cell lines were established. Each individual tyrosine-substituted pGHR analogs was able to activate STAT5 (signal transducer and activator of transcription 5; previously termed pp95) at levels comparable to those of wild type pGHR. Analyses of these pGHR analogs revealed that a single tyrosine residue at position 487, 534, 566, or 627 is sufficient for STAT5 phosphorylation. This result suggested that a redundancy in tyrosine residue requirement may be employed in GH-mediated signal transduction. Also, we found that the requirement of tyrosine residues for STAT5 phosphorylation directly correlated with their phosphorylation status. Combining both STAT5 and GHR tyrosine phosphorylation results, we have deduced that Y332, Y487, Y534, Y566, and Y627 are pGHR tyrosine phosphorylation sites. Additionally, Janus kinase 2 was activated by GH in all pGHR tyrosine-substituted analogs, including one containing no intracellular tyrosines, which agrees with a previous report that Janus kinase 2 activation is independent of GHR tyrosine phosphorylation.
为了确定生长激素受体(GHR)胞质酪氨酸残基和酪氨酸磷酸化是否是信号转导所必需的,我们将猪(p)GHR胞质中的八个酪氨酸逐个或从C末端逐步用苯丙氨酸替代。相反,在不含酪氨酸的pGHR类似物中逐个再生这八个酪氨酸。将突变的pGHR cDNA转染到小鼠L细胞(MLC)中并建立细胞系。每个单独的酪氨酸取代的pGHR类似物都能够以与野生型pGHR相当的水平激活信号转导子和转录激活子5(STAT5;以前称为pp95)。对这些pGHR类似物的分析表明,487、534、566或627位的单个酪氨酸残基足以使STAT5磷酸化。这一结果表明,在生长激素介导的信号转导中可能存在酪氨酸残基需求的冗余。此外,我们发现STAT5磷酸化对酪氨酸残基的需求与其磷酸化状态直接相关。结合STAT5和GHR酪氨酸磷酸化结果,我们推断Y332、Y487、Y534、Y566和Y627是pGHR酪氨酸磷酸化位点。此外,在所有pGHR酪氨酸取代的类似物中,包括一个不含细胞内酪氨酸的类似物,Janus激酶2都被生长激素激活,这与之前的一份报告一致,即Janus激酶2的激活不依赖于GHR酪氨酸磷酸化。