Waters S B, Holt K H, Pessin J E
Program in Molecular Biology, University of Iowa, Iowa City 52242, USA.
J Biol Chem. 1996 Mar 15;271(11):6328-32. doi: 10.1074/jbc.271.11.6328.
Insulin activation of Ras is mediated by the plasma membrane targeting of the guanylnucleotide exchange factor SOS associated with the small adapter protein Grb2. SOS also lies in an insulin-stimulated feedback pathway in which the serine/threonine phosphorylation of SOS results in disassociation of the Grb2-SOS complex thereby limiting the extent of Ras activation. To examine the relative role of the mitogen-activated protein kinases in the feedback phosphorylation of SOS we determined the signaling specificity of insulin, osmotic shock, and anisomycin to activate the ERK (extracellular-signal regulated kinase) and JNK (c-Jun kinase) pathways. In Chinese hamster ovary cells expressing the human insulin receptor and murine 3T3L1 adipocytes, insulin specifically activated ERK with no significant effect on JNK, whereas anisomycin specifically activated JNK but was unable to activate ERK. In contrast, osmotic shock was equally effective in the activation of both kinase pathways. Insulin and osmotic shock, but not anisomycin, resulted in SOS phosphorylation and disassociation of the Grb2-SOS complex, demonstrating that the JNK pathway was not involved in the insulin-stimulated feedback uncoupling of the Grb2- SOS complex. Both the insulin and osmotic shock-induced activation of ERK was prevented by treatment of cells with the specific MEK inhibitor (PD98059). However, expression of dominant-interfering Ras (N17Ras) inhibited the insulin- but not osmotic shock-stimulated phosphorylation of ERK and SOS. These data demonstrate that activation of the ERK pathway, but not JNK, is responsible for the feedback phosphorylation and disassociation of the Grb2-SOS complex.
胰岛素对Ras的激活是由鸟苷酸交换因子SOS与小衔接蛋白Grb2结合并定位于质膜介导的。SOS也存在于胰岛素刺激的反馈途径中,在该途径中,SOS的丝氨酸/苏氨酸磷酸化导致Grb2-SOS复合物解离,从而限制Ras激活的程度。为了研究丝裂原活化蛋白激酶在SOS反馈磷酸化中的相对作用,我们确定了胰岛素、渗透压休克和茴香霉素激活细胞外信号调节激酶(ERK)和c-Jun激酶(JNK)途径的信号特异性。在表达人胰岛素受体的中国仓鼠卵巢细胞和小鼠3T3L1脂肪细胞中,胰岛素特异性激活ERK,对JNK无显著影响,而茴香霉素特异性激活JNK,但不能激活ERK。相反,渗透压休克在激活这两种激酶途径方面同样有效。胰岛素和渗透压休克而非茴香霉素导致SOS磷酸化和Grb2-SOS复合物解离,表明JNK途径不参与胰岛素刺激的Grb2-SOS复合物反馈解偶联。用特异性MEK抑制剂(PD98059)处理细胞可阻止胰岛素和渗透压休克诱导的ERK激活。然而,显性干扰Ras(N17Ras)的表达抑制了胰岛素而非渗透压休克刺激的ERK和SOS磷酸化。这些数据表明,ERK途径而非JNK途径的激活负责Grb2-SOS复合物的反馈磷酸化和解离。