He Kai, Wang Xiangdong, Jiang Jing, Guan Ran, Bernstein Kenneth E, Sayeski Peter P, Frank Stuart J
Department of Medicine, University of Alabama, Birmingham, Alabama 35294-0012, USA.
Mol Endocrinol. 2003 Nov;17(11):2211-27. doi: 10.1210/me.2003-0256. Epub 2003 Aug 14.
GH signaling depends on functional interaction of the GH receptor (GHR) and the cytoplasmic tyrosine kinase, Janus kinase 2 (JAK2), which possesses a C-terminal kinase domain, a catalytically inactive pseudokinase domain just N-terminal to the kinase domain, and an N-terminal half shown by us and others to harbor elements for GHR association. Computational analyses indicate that JAKs contain in their N termini ( approximately 450 residues) divergent FERM domains. FERM domains (or subdomains within them) in JAKS may be important for associations with cytokine receptors. For some cytokine receptors, JAK interaction may be required for receptor surface expression. We previously demonstrated that a JAK2 mutant devoid of its N-terminal 239 residues (JAK2-Delta1-239) did not associate with GHR and could not mediate GH- induced signaling. In this report we employ a JAK2-deficient cell line to further define N-terminal JAK2 regions required for physical and functional association with the GHR. We also examine whether JAK2 expression affects cell surface expression of the GHR. Our results suggest that FERM motifs play an important role in the interaction of GHR and JAK2. While JAK2 expression is not required for detectable surface GHR expression, an increased JAK2 level increases the fraction of GHRs that achieves resistance to deglycosylation by endoglycosidase H, suggesting that the GHR-JAK2 association may enhance either the receptor's efficiency of maturation or its stability. Further, we report evidence for the existence of a novel GH-inducible functional interaction between JAK2 molecules that may be important in the mechanism of GH-triggered JAK2 signaling.
生长激素(GH)信号传导依赖于生长激素受体(GHR)与细胞质酪氨酸激酶——Janus激酶2(JAK2)的功能性相互作用。JAK2具有一个C端激酶结构域、一个位于激酶结构域N端的催化无活性的假激酶结构域,以及一个N端半段,我们和其他人已证明该半段含有与GHR结合的元件。计算分析表明,JAKs在其N端(约450个残基)含有不同的FERM结构域。JAKs中的FERM结构域(或其中的亚结构域)可能对与细胞因子受体的结合很重要。对于一些细胞因子受体,JAK相互作用可能是受体表面表达所必需的。我们之前证明,一个缺失其N端239个残基的JAK2突变体(JAK2-Δ1-239)不与GHR结合,且不能介导GH诱导的信号传导。在本报告中,我们使用一种JAK2缺陷细胞系来进一步确定与GHR进行物理和功能结合所需的JAK2 N端区域。我们还研究了JAK2表达是否影响GHR的细胞表面表达。我们的结果表明,FERM基序在GHR与JAK2的相互作用中起重要作用。虽然可检测到的表面GHR表达不需要JAK2表达,但JAK2水平的增加会增加对内切糖苷酶H去糖基化具有抗性的GHR比例,这表明GHR-JAK2结合可能会提高受体的成熟效率或稳定性。此外,我们报告了存在一种新型的GH诱导的JAK2分子间功能性相互作用的证据,这可能在GH触发的JAK2信号传导机制中很重要。