Wrighton C, Busslinger M
Institute of Molecular Pathology, Vienna, Austria.
Mol Cell Biol. 1993 Aug;13(8):4657-69. doi: 10.1128/mcb.13.8.4657-4669.1993.
We have established rat PC12 pheochromocytoma cell lines stably expressing the estrogen-activatable transcription factor FosER to identify genes that can be regulated by c-Fos in this neuronal cell type. Induction of ectopic c-Fos activity in PC12 cells increased the mRNA levels of the ornithine decarboxylase (ODC) and tyrosine hydroxylase genes with similar kinetics and to the same maximal level as nerve growth factor treatment. In both cases the rate of transcription initiation was increased. Induction of the ODC gene occurred even in the absence of protein synthesis, indicating direct regulation by FosER. ODC expression, however, was not induced by a mutant FosER protein containing a proline insertion in the basic region of the c-Fos moiety, demonstrating the requirement for a functional DNA-binding domain. These data show that FosER, and by extrapolation c-Fos, can directly activate transcription of the endogenous ODC gene in PC12 cells by binding to cis-regulatory sequences. Activation of the ODC gene was unexpectedly transient, as transcripts returned to the basal level after prolonged exposure of PC12 cells to FosER activity. Furthermore, ODC transcription was not at all induced by FosER in rat fibroblasts. To account for this cell-specific action of FosER, we propose that stimulation of the ODC gene by FosER requires either (i) cooperation with another transcription factor(s) or (ii) a specific pattern of modification which is present in PC12 cells but not in otherwise unstimulated fibroblasts. One or both of these mechanisms may be employed by cells to achieve selective gene activation in response to apparently stereotyped induction of c-fos.
我们建立了稳定表达雌激素可激活转录因子FosER的大鼠嗜铬细胞瘤PC12细胞系,以鉴定在这种神经元细胞类型中可受c-Fos调控的基因。在PC12细胞中异位诱导c-Fos活性可增加鸟氨酸脱羧酶(ODC)和酪氨酸羟化酶基因的mRNA水平,其动力学相似,且达到与神经生长因子处理相同的最大水平。在这两种情况下,转录起始速率均增加。即使在没有蛋白质合成的情况下,ODC基因也会被诱导,这表明FosER可直接调控。然而,ODC的表达不会被在c-Fos部分的碱性区域插入脯氨酸的突变FosER蛋白诱导,这表明需要一个功能性的DNA结合结构域。这些数据表明,FosER以及由此推断的c-Fos,可以通过与顺式调控序列结合直接激活PC12细胞中内源性ODC基因的转录。ODC基因的激活出乎意料地短暂,因为在PC12细胞长时间暴露于FosER活性后,转录本会恢复到基础水平。此外,在大鼠成纤维细胞中,FosER根本不会诱导ODC转录。为了解释FosER这种细胞特异性作用,我们提出FosER对ODC基因的刺激需要(i)与另一种转录因子协同作用,或者(ii)一种特定的修饰模式,这种模式存在于PC12细胞中,但在未受刺激的成纤维细胞中不存在。细胞可能采用这两种机制中的一种或两种来实现对c-fos明显定型诱导的选择性基因激活。