Smit L S, Vanderkuur J A, Stimage A, Han Y, Luo G, Yu-Lee L Y, Schwartz J, Carter-Su C
Department of Physiology, University of Michigan Medical School, Ann Arbor 49109-0622, USA.
Endocrinology. 1997 Aug;138(8):3426-34. doi: 10.1210/endo.138.8.5332.
GH is known to activate JAK2 tyrosine kinase and members of the Stat family of transcription factors, including Stats 1, 3, and 5. The recent observation that at least two Stat5 proteins (Stat5A and Stat5B) exist in mouse and human, raises the question of whether GH activates both Stat5A and Stat5B and, if so, whether the requirements for activation are the same. An initial report investigating this issue demonstrated GH-dependent activation of Stat5A but not Stat5B. In this paper, we demonstrate (in COS cells expressing rat GH receptor (rGHR) and either Stat5A or Stat5B, 3T3-F442A fibroblasts, and CHO cells expressing rGHR) that GH induces tyrosyl phosphorylation of both Stat5A and Stat5B. Similar time courses of phosphorylation were observed for the two proteins. Interestingly, the pattern of observed bands differs for the two forms of Stat5. Two closely migrating Stat5A bands can be detected in cells treated with or without GH. Both of these bands become tyrosyl phosphorylated in response to GH. Three species of Stat5B are observed in untreated cells. An additional, more slowly migrating Stat5B band, appears upon treatment with GH. The three more slower migrating Stat5B bands observed in response to GH contain phosphorylated tyrosyl residues. We further demonstrate that GH induces binding of Stat5A and Stat5B, as well as Stat1, to the GAS-like element in the beta-casein promoter. We and others have demonstrated previously that specific regions of GHR are required for GH-dependent activation of what is here identified as Stat5B. To gain insight into the mechanism by which GH promotes tyrosyl phosphorylation of Stat5A, GH-dependent tyrosyl phosphorylation of Stat5A was examined in CHO cells expressing truncated and mutated rGHR. The results indicate that Stat5A and Stat5B require the same regions of rGHR for maximal activation by GH: the C-terminal half of the cytoplasmic domain; tyrosines 333 and/or 338 in the N-terminal half of the cytoplasmic domain; and the regions required for JAK2 activation. To dissect further the mechanism by which GH activates Stat5A and B, the requirement for JAK2 in GH-dependent Stat5 tyrosyl phosphorylation was assessed using JAK2-deficient cells expressing GHR (gamma2A-GHR) and the wild-type parental cell line expressing GHR (2C4-GHR). GH-induced tyrosyl phosphorylation of Stat5B in 2C4-GHR cells but not in the JAK2 deficient, gamma2A-GHR cells, indicating that JAK2 is required for GH-dependent tyrosyl phosphorylation of Stat5B. Western blotting revealed that Stat5A is not expressed in this cell type. Taken together, these findings suggest that: 1) GH activates both Stat5A and Stat5B in several cell types; 2) the pattern of bands observed differs for Stat5A and Stat5B; 3) GH-dependent tyrosyl phosphorylation of Stat5A requires specific regions of GHR, and these requirements are the same as for Stat5B; and 4) JAK2 kinase is required for GH-dependent tyrosyl phosphorylation of Stat5B and, most likely, Stat5A.
已知生长激素(GH)可激活JAK2酪氨酸激酶以及转录因子Stat家族的成员,包括Stat1、Stat3和Stat5。最近观察到小鼠和人类中至少存在两种Stat5蛋白(Stat5A和Stat5B),这就提出了一个问题,即GH是否能激活Stat5A和Stat5B,如果能,激活的条件是否相同。一份初步报告对该问题进行了研究,结果表明GH可激活Stat5A,但不能激活Stat5B。在本文中,我们证明(在表达大鼠生长激素受体(rGHR)以及Stat5A或Stat5B的COS细胞、3T3 - F442A成纤维细胞和表达rGHR的CHO细胞中),GH可诱导Stat5A和Stat5B的酪氨酸磷酸化。两种蛋白的磷酸化时间进程相似。有趣的是,两种形式的Stat5观察到的条带模式不同。在用或未用GH处理的细胞中均可检测到两条迁移距离相近的Stat5A条带。这两条带在GH刺激下均发生酪氨酸磷酸化。在未处理的细胞中可观察到三种Stat5B条带。在用GH处理后,会出现一条额外的、迁移速度更慢的Stat5B条带。响应GH观察到的三条迁移速度更慢的Stat5B条带含有磷酸化的酪氨酸残基。我们进一步证明,GH可诱导Stat5A和Stat5B以及Stat1与β-酪蛋白启动子中的类GAS元件结合。我们和其他人之前已经证明,GHR的特定区域是GH依赖性激活此处鉴定为Stat5B所必需的。为深入了解GH促进Stat5A酪氨酸磷酸化的机制,我们在表达截短和突变rGHR的CHO细胞中研究了GH依赖性的Stat5A酪氨酸磷酸化。结果表明,Stat5A和Stat5B需要rGHR的相同区域才能被GH最大程度激活:细胞质结构域的C端一半;细胞质结构域N端一半中的酪氨酸333和/或338;以及JAK2激活所需的区域。为进一步剖析GH激活Stat5A和B的机制,我们使用表达GHR的JAK2缺陷细胞(γ2A - GHR)和表达GHR的野生型亲本细胞系(2C4 - GHR)评估了JAK2在GH依赖性Stat5酪氨酸磷酸化中的作用。GH可诱导2C4 - GHR细胞中Stat5B的酪氨酸磷酸化,但不能诱导JAK2缺陷的γ2A - GHR细胞中Stat5B的酪氨酸磷酸化,这表明JAK2是GH依赖性Stat5B酪氨酸磷酸化所必需的。蛋白质印迹分析显示,Stat5A在这种细胞类型中不表达。综上所述,这些发现表明:1)GH可在多种细胞类型中激活Stat5A和Stat5B;2)Stat5A和Stat5B观察到的条带模式不同;3)GH依赖性的Stat5A酪氨酸磷酸化需要GHR的特定区域,且这些条件与Stat5B相同;4)JAK2激酶是GH依赖性Stat5B酪氨酸磷酸化以及很可能Stat5A酪氨酸磷酸化所必需的。