Okada S, Matsuda M, Anafi M, Pawson T, Pessin J E
Department of Physiology and Biophysics, The University of Iowa, Iowa City, IA 52242, USA.
EMBO J. 1998 May 1;17(9):2554-65. doi: 10.1093/emboj/17.9.2554.
Insulin stimulation of Chinese hamster ovary cells expressing the human insulin receptor resulted in a time-dependent decrease in the amount of GTP bound to Rap1. The inactivation of Rap1 was associated with an insulin-stimulated decrease in the amount of Rap1 that was bound to Raf1. In parallel with the dissociation of Raf1 from Rap1, there was an increased association of Raf1 with Ras. Concomitant with the inactivation of Rap1 and decrease in Rap1-Raf1 binding, we observed a rapid insulin-stimulated dissociation of the CrkII-C3G complex which occurred in a Ras-independent manner. The dissociation of the CrkII-C3G was recapitulated in vitro using a GST-C3G fusion protein to precipitate CrkII from whole cell detergent extracts. The association of GST-C3G with CrkII was also dose dependent and demonstrated that insulin reduced the affinity of CrkII for C3G without any effect on CrkII protein levels. Furthermore, the reduction in CrkII binding affinity was reversible by tyrosine dephosphorylation with PTP1B and by mutation of Tyr221 to phenylalanine. Together, these data demonstrate that insulin treatment results in the de-repression of Rap1 inhibitory function on the Raf1 kinase concomitant with Ras activation and stimulation of the downstream Raf1/MEK/ERK cascade.
用胰岛素刺激表达人胰岛素受体的中国仓鼠卵巢细胞,结果显示与Rap1结合的GTP量呈时间依赖性减少。Rap1的失活与胰岛素刺激导致的与Raf1结合的Rap1量减少有关。与Raf1从Rap1上解离同时,Raf1与Ras的结合增加。伴随着Rap1的失活以及Rap1-Raf1结合减少,我们观察到CrkII-C3G复合物迅速发生胰岛素刺激的解离,且该过程以不依赖Ras的方式进行。使用GST-C3G融合蛋白从全细胞去污剂提取物中沉淀CrkII,在体外重现了CrkII-C3G的解离。GST-C3G与CrkII的结合也呈剂量依赖性,表明胰岛素降低了CrkII对C3G的亲和力,而对CrkII蛋白水平没有任何影响。此外,通过用蛋白酪氨酸磷酸酶1B(PTP1B)进行酪氨酸去磷酸化以及将Tyr221突变为苯丙氨酸,可使CrkII结合亲和力的降低得以逆转。总之,这些数据表明胰岛素处理导致Rap1对Raf1激酶的抑制功能解除,同时伴有Ras激活以及下游Raf1/MEK/ERK级联反应的刺激。