Srinivas S, Schönthal A, Eckhart W
Molecular Biology and Virology Laboratory, Salk Institute, San Diego, CA 92186.
Proc Natl Acad Sci U S A. 1994 Oct 11;91(21):10064-8. doi: 10.1073/pnas.91.21.10064.
Polyomavirus middle-sized tumor antigen (MT) increases the expression of c-jun through a phorbol 12-O-tetradecanoate 13-acetate response element in the c-jun promoter. To investigate the cellular signaling pathways affected by MT, we studied the role of the c-Ras and Raf-1 proteins in MT-induced transactivation of c-jun and cell transformation. There was an increase in GTP complexed to Ras in MT-expressing cells, indicating an increase in Ras activity. Coexpression of dominant inhibitory mutants of Ha-ras and raf-1 with MT inhibited MT-mediated transactivation and focus formation. Studies of the phosphorylation of c-Jun showed that MT expression increased the phosphorylation of Ser-63 and Ser-73 in the transactivation domain and decreased the phosphorylation of a peptide containing Ser-243, Ser-249, and Thr-231 in the DNA binding domain. MT increased the transcriptional activating ability of c-Jun but failed to increase the transcriptional activating ability of c-Jun mutants with Ser-63 and Ser-73 changed to nonphosphorylatable Ala, indicating that MT modulates c-Jun activity through phosphorylation. The dominant inhibitory mutants of Ha-ras and raf-1 interfered with the ability of MT to activate c-Jun. The results indicate that MT induces a phosphorylation cascade through the activation of c-Ras and Raf-1 and that c-Jun is one of the downstream targets that may cause changes in gene expression leading to cell transformation.
多瘤病毒中型肿瘤抗原(MT)通过c-jun启动子中的佛波醇12-O-十四烷酸酯13-乙酸酯反应元件增加c-jun的表达。为了研究受MT影响的细胞信号通路,我们研究了c-Ras和Raf-1蛋白在MT诱导的c-jun反式激活和细胞转化中的作用。在表达MT的细胞中,与Ras结合的GTP复合物增加,表明Ras活性增强。Ha-ras和raf-1的显性抑制突变体与MT共表达可抑制MT介导的反式激活和集落形成。对c-Jun磷酸化的研究表明,MT表达增加了反式激活域中Ser-63和Ser-73的磷酸化,并降低了DNA结合域中含有Ser-243、Ser-249和Thr-231的肽段的磷酸化。MT增加了c-Jun的转录激活能力,但未能增加Ser-63和Ser-73突变为不可磷酸化的Ala的c-Jun突变体的转录激活能力,这表明MT通过磷酸化调节c-Jun活性。Ha-ras和raf-1的显性抑制突变体干扰了MT激活c-Jun的能力。结果表明,MT通过激活c-Ras和Raf-1诱导磷酸化级联反应,并且c-Jun是可能导致基因表达变化从而导致细胞转化的下游靶点之一。