Hipskind R A, Büscher D, Nordheim A, Baccarini M
Institute for Molecular Biology, Hannover Medical School, Germany.
Genes Dev. 1994 Aug 1;8(15):1803-16. doi: 10.1101/gad.8.15.1803.
Transcriptional activation of the immediate early genes c-fos and egr-1 by extracellular signals appears to be mediated by ternary complex factors (TCFs). In BAC-1 macrophages, growth factor stimulation leads to the retardation of protein-DNA complexes containing distinct TCFs. One TCF is recognized by Elk-1 antisera, whereas the other is immunologically related to SAP-1. The appearance and decay of hyperphosphorylated TCF/Elk-1-containing complexes after stimulation coincide with the activation of mitogen-activated protein kinase (MAPK) and the induction and repression of c-fos and egr-1, whereas modified TCF/SAP-1-containing complexes decay more slowly. Suppression of MAPK activation in macrophages and fibroblasts correlates with the failure to induce TCF/Elk-1 hyperphosphorylation without blocking TCF/SAP-1 modification. Accordingly the modified Elk-1 complex is generated in vitro by activated MAPK, whereas that of SAP-1 is not. Expression of a dominant-negative Ras mutant (RasAsn17) in BAC-1 cells does not affect CSF-1-induced TCF/SAP-1 modification while suppressing TCF/Elk-1 phosphorylation. Neither PKC down-regulation by TPA nor inhibition of Gi proteins by pertussis toxin pretreatment influences CSF-1-induced signaling to TCFs. These data indicate the existence of two separate signaling pathways for the modification of distinct TCFs: one dependent on Ras and MAPK and converging on TCF/Elk-1, and the other targeting TCF/SAP-1 independently of Ras and MAPK.
细胞外信号对即刻早期基因c-fos和egr-1的转录激活似乎是由三元复合因子(TCFs)介导的。在BAC-1巨噬细胞中,生长因子刺激导致含有不同TCFs的蛋白质-DNA复合物迁移率减慢。一种TCF可被Elk-1抗血清识别,而另一种在免疫上与SAP-1相关。刺激后含高磷酸化TCF/Elk-1复合物的出现和衰减与丝裂原活化蛋白激酶(MAPK)的激活以及c-fos和egr-1的诱导和抑制相一致,而含修饰的TCF/SAP-1复合物的衰减则较慢。巨噬细胞和成纤维细胞中MAPK激活的抑制与未能诱导TCF/Elk-1高磷酸化相关,而不影响TCF/SAP-1的修饰。因此,修饰的Elk-1复合物在体外由活化的MAPK产生,而SAP-1的复合物则不然。在BAC-1细胞中表达显性负性Ras突变体(RasAsn17)不影响CSF-1诱导的TCF/SAP-1修饰,同时抑制TCF/Elk-1磷酸化。佛波酯(TPA)对PKC的下调或百日咳毒素预处理对Gi蛋白的抑制均不影响CSF-1诱导的向TCFs的信号传导。这些数据表明存在两条独立的信号通路用于不同TCFs的修饰:一条依赖于Ras和MAPK并汇聚于TCF/Elk-1,另一条独立于Ras和MAPK靶向TCF/SAP-1。