Vandel L, Montreau N, Vial E, Pfarr C M, Binetruy B, Castellazzi M
Unité de Virologie Humaine, INSERM-U412, Ecole Normale Supérieure, Paris, France.
Mol Cell Biol. 1996 May;16(5):1881-8. doi: 10.1128/MCB.16.5.1881.
Among the Jun family of transcription factors, only c-Jun displays full transforming potential in cooperation with activated c-Ha-Ras in primary rat embryo fibroblasts. c-Jun in combination with Ras can both induce foci of transformed cells from rat embryo fibroblast monolayers and promote the establishment of these foci as tumoral cell lines. JunB can also cooperate with Ras to induce foci but is unable to promote immortalization. We report here that JunD, in cooperation with Ras, induces foci with an efficiency similar to that of JunB. Artificial Jun/eb1 derivatives from each of the three Jun proteins were also analyzed. These constructs carry a heterologous homodimerization domain from the viral EB1 transcription factor and are thought to form only homodimers in the cell. We show here that these Jun/eb1 chimeras are potent transactivators of AP1 sites and that they can cooperate with c-Ha-Ras to induce foci. However, among all the Ras-Jun and Ras-Jun/eb1 combinations tested, only foci from Ras-c-Jun can be efficiently expanded and maintained as long-term growing cultures. Therefore, we suggest that a heterodimer containing c-Jun might be required for in vitro establishment of these primary mammalian cells.
在转录因子Jun家族中,只有c-Jun与激活的c-Ha-Ras协同作用时,在原代大鼠胚胎成纤维细胞中显示出完全的转化潜能。c-Jun与Ras联合使用,既能诱导大鼠胚胎成纤维细胞单层产生转化细胞集落,又能促进这些集落形成肿瘤细胞系。JunB也能与Ras协同诱导集落,但无法促进永生化。我们在此报告,JunD与Ras协同作用时,诱导集落的效率与JunB相似。我们还分析了来自三种Jun蛋白的人工Jun/eb1衍生物。这些构建体携带来自病毒EB1转录因子的异源同二聚化结构域,并且被认为在细胞中仅形成同二聚体。我们在此表明,这些Jun/eb1嵌合体是AP1位点的有效反式激活因子,并且它们可以与c-Ha-Ras协同诱导集落。然而,在所有测试的Ras-Jun和Ras-Jun/eb1组合中,只有来自Ras-c-Jun的集落能够有效地扩增并作为长期生长培养物维持下去。因此,我们认为这些原代哺乳动物细胞的体外建立可能需要含有c-Jun的异二聚体。