Okazaki M, Kishida S, Hinoi T, Hasegawa T, Tamada M, Kataoka T, Kikuchi A
Department of Biochemistry, Hiroshima University School of Medicine, Minami-ku, Japan.
Oncogene. 1997 Feb 6;14(5):515-21. doi: 10.1038/sj.onc.1200860.
Ral, a member of small GTP-binding protein (G protein) superfamily, has been suggested to act downstream of Ras, since Ral GDP dissociation stimulator (RalGDS) has been found to be an effector protein of Ras. In this study, we examined the effects of RalGDS and Ral on gene expression using c-fos promoter linked to the luciferase reporter gene (c-fos-luciferase). RalGDS interacted with RasG12V/E37G (in which Gly-12 and Glu-37 were changed to Val and Gly, respectively) which failed to bind to Raf in COS cells. RafCAAX is an active Raf kinase targeted to the plasma membranes by virtue of the addition of a C-terminal localization signal from K-Ras. Transfection of either RalGDS or RafCAAX into NIH3T3 cells slightly stimulated c-fos-luciferase expression and cotransfection of both proteins greatly enhanced the expression. RalGDS and an activated Rac (RacG12V) did not act synergistically to stimulate c-fos-luciferase expression. Transfection of an activated Ral (RalG23V) stimulated c-fos-luciferase expression. Furthermore, cotransfection of RalG23V and an activated Ras (RasG12V) enhanced RasG12V-dependent c-fos-luciferase expression. However, RalG23V did not synergize with RafCAAX, RacG12V or RalGDS to stimulate the expression. These results show that RalGDS and Ral regulate c-fos promoter activity and suggest that RalGDS may activate c-fos promoter synergistically with the signal from Raf by transmitting the signal to a target other than Ral.
Ral是小GTP结合蛋白(G蛋白)超家族的成员之一,由于Ral GDP解离刺激因子(RalGDS)被发现是Ras的效应蛋白,因此有人提出Ral在Ras的下游发挥作用。在本研究中,我们使用与荧光素酶报告基因相连的c-fos启动子(c-fos-荧光素酶)检测了RalGDS和Ral对基因表达的影响。RalGDS与RasG12V/E37G(其中第12位的甘氨酸和第37位的谷氨酸分别被缬氨酸和甘氨酸取代)相互作用,而RasG12V/E37G在COS细胞中无法与Raf结合。RafCAAX是一种活性Raf激酶,通过添加来自K-Ras的C末端定位信号而靶向质膜。将RalGDS或RafCAAX转染到NIH3T3细胞中可轻微刺激c-fos-荧光素酶的表达,而同时转染这两种蛋白则可大大增强该表达。RalGDS和活化的Rac(RacG12V)不会协同刺激c-fos-荧光素酶的表达。转染活化的Ral(RalG23V)可刺激c-fos-荧光素酶的表达。此外,RalG23V与活化的Ras(RasG12V)共转染可增强RasG12V依赖性的c-fos-荧光素酶表达。然而,RalG23V不会与RafCAAX、RacG12V或RalGDS协同刺激该表达。这些结果表明,RalGDS和Ral调节c-fos启动子活性,并提示RalGDS可能通过将信号传递给Ral以外的靶点,与来自Raf的信号协同激活c-fos启动子。