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Ras/丝裂原活化蛋白激酶依赖性和非依赖性信号通路靶向不同的三元复合因子。

Ras/MAP kinase-dependent and -independent signaling pathways target distinct ternary complex factors.

作者信息

Hipskind R A, Büscher D, Nordheim A, Baccarini M

机构信息

Institute for Molecular Biology, Hannover Medical School, Germany.

出版信息

Genes Dev. 1994 Aug 1;8(15):1803-16. doi: 10.1101/gad.8.15.1803.

DOI:10.1101/gad.8.15.1803
PMID:7958858
Abstract

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.

摘要

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。

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