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与生长激素受体偶联所需的JAK2酪氨酸激酶区域。

Regions of the JAK2 tyrosine kinase required for coupling to the growth hormone receptor.

作者信息

Frank S J, Yi W, Zhao Y, Goldsmith J F, Gilliland G, Jiang J, Sakai I, Kraft A S

机构信息

Department of Medicine, University of Alabama at Birmingham, USA.

出版信息

J Biol Chem. 1995 Jun 16;270(24):14776-85. doi: 10.1074/jbc.270.24.14776.

Abstract

Growth hormone (GH) treatment of cells promotes activation of JAK2, a GH receptor (GHR)-associated tyrosine kinase. We now explore JAK2 regions required for GHR-induced signaling. Wild-type (WT) JAK2 and JAK2 molecules with deletions of the amino terminus (JAK2ATD), carboxyl terminus (JAK2CTD), or kinase-like domain (JAK2PKD) were each transiently coexpressed in COS-7 cells with the rabbit GHR. The following responses were assayed: GH-induced transactivation of a luciferase reporter governed by a c-fos enhancer element; GH-induced shift in the molecular mass of a cotransfected epitope-tagged extracellular signal-regulated kinase molecule; and GH-induced antiphosphotyrosine immunoprecipitability of the transfected JAK2 form. In each assay, WTJAK2 and JAK2PKD allowed GH-induced signaling, whereas JAK2ATD and JAK2CTD did not. Anti-GHR serum coimmunoprecipitated WTJAK2, JAK2PKD, and JAK2CTD, but not JAK2ATD. Finally, a chimera in which the JAK2 kinase domain replaced the GHR cytoplasmic domain signaled GH-induced transactivation. We conclude: 1) kinase-like domain deletion eliminates neither physical nor functional interaction between JAK2 and the GHR; 2) kinase domain deletion eliminates functional but not physical coupling of JAK2 to the GHR; 3) interaction with the GHR appears dependent on the NH2-terminal one-fifth of JAK2; and 4) a GH-responsive signaling unit can include as little as the GHR external and transmembrane domains and the JAK2 kinase domain.

摘要

生长激素(GH)对细胞的处理可促进JAK2的激活,JAK2是一种与生长激素受体(GHR)相关的酪氨酸激酶。我们现在探索GHR诱导信号传导所需的JAK2区域。野生型(WT)JAK2以及氨基末端缺失(JAK2ATD)、羧基末端缺失(JAK2CTD)或激酶样结构域缺失(JAK2PKD)的JAK2分子分别与兔GHR在COS-7细胞中瞬时共表达。检测了以下反应:GH诱导的由c-fos增强子元件控制的荧光素酶报告基因的反式激活;GH诱导的共转染的表位标记的细胞外信号调节激酶分子分子量的变化;以及GH诱导的转染的JAK2形式的抗磷酸酪氨酸免疫沉淀性。在每项检测中,WTJAK2和JAK2PKD允许GH诱导的信号传导,而JAK2ATD和JAK2CTD则不允许。抗GHR血清共免疫沉淀WTJAK2、JAK2PKD和JAK2CTD,但不沉淀JAK2ATD。最后,一种JAK2激酶结构域取代GHR胞质结构域的嵌合体介导了GH诱导的反式激活。我们得出以下结论:1)激酶样结构域缺失既不消除JAK2与GHR之间的物理相互作用,也不消除其功能相互作用;2)激酶结构域缺失消除了JAK2与GHR的功能偶联,但不消除其物理偶联;3)与GHR的相互作用似乎依赖于JAK2的氨基末端五分之一;4)一个GH反应性信号传导单元可以只包括GHR的胞外和跨膜结构域以及JAK2激酶结构域。

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