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与ETS相关的转录因子ERM是涉及丝裂原活化蛋白激酶(MAPK)和蛋白激酶A(PKA)的信号级联反应的核靶点。

The ETS-related transcription factor ERM is a nuclear target of signaling cascades involving MAPK and PKA.

作者信息

Janknecht R, Monté D, Baert J L, de Launoit Y

机构信息

Institute for Molecular Biology, Hannover Medical School, Hannover-Germany.

出版信息

Oncogene. 1996 Oct 17;13(8):1745-54.

PMID:8895521
Abstract

Recent studies support a model for signal transduction from activated receptor tyrosine kinases to Ras which, in turn, activates the pathway of the mitogen-activated protein kinase (MAPK). Although some members of the Ets transcription factor family have been shown to be activated by this signaling pathway, no data are available on the activation of the PEA3 group of Ets proteins. This group is composed of three members -- PEA3, ER81 and ERM -- which are very similar in the DNA-binding domain, the ETS domain, in the 32 residue amino-terminal acidic domain and in the 61 residue carboxy-terminal domain. First of all we demonstrated that ERM-transfected cells contain a positive labeling in the nucleus, and we concluded that a nuclear localization signal might be situated in the ETS domain. We then showed that of four putative reporter plasmids, ERM activated the artificial 3 x TORU plasmid which contains an Ets binding site contiguous to an AP1 one. This transactivation enhancement requires the presence of the ERM amino-terminal domain. In contrast, although the lack of the carboxy-terminal domain induced a decrease in transactivation, this latter domain is not crucial. By using the E74-reporter plasmid system which is not basically activated by ERM, we showed that the activation of the Ras/Raf-1/MAPK pathway significantly enhanced ERM-mediated transactivation. The deletion of the amino-terminal transactivation domain abolished the capacity of stimulated MAPK to activate ERM. We also demonstrated that ERM can also be activated through the protein kinase A (PKA), another signaling pathway. Nevertheless, the MAPK and PKA activation of ERM are not synergistic. Finally, we showed that this Ets transcription factor is in vitro phosphorylated by both activated ERK-2 and activated PKA. ERM has thus been identified as a transcription factor which is a target for two different signaling pathways and might therefore be involved in the mitogenic response of cells.

摘要

最近的研究支持一种从活化的受体酪氨酸激酶到Ras的信号转导模型,Ras继而激活丝裂原活化蛋白激酶(MAPK)途径。尽管Ets转录因子家族的一些成员已被证明可被该信号通路激活,但关于Ets蛋白的PEA3亚组的激活情况尚无数据。该亚组由三个成员组成——PEA3、ER81和ERM——它们在DNA结合结构域、ETS结构域、32个残基的氨基末端酸性结构域和61个残基的羧基末端结构域中非常相似。首先,我们证明转染了ERM的细胞在细胞核中有阳性标记,并且我们得出结论,核定位信号可能位于ETS结构域中。然后我们表明,在四个假定的报告质粒中,ERM激活了人工3x TORU质粒,该质粒包含一个与AP1位点相邻的Ets结合位点。这种反式激活增强需要ERM氨基末端结构域的存在。相比之下,尽管羧基末端结构域的缺失导致反式激活减少,但后者结构域并非至关重要。通过使用基本上不被ERM激活的E74报告质粒系统,我们表明Ras/Raf-1/MAPK途径的激活显著增强了ERM介导的反式激活。氨基末端反式激活结构域的缺失消除了受刺激的MAPK激活ERM的能力。我们还证明ERM也可以通过另一种信号通路蛋白激酶A(PKA)被激活。然而,ERM的MAPK和PKA激活并不具有协同性。最后,我们表明这种Ets转录因子在体外被活化的ERK-2和活化的PKA磷酸化。因此,ERM已被鉴定为一种转录因子,它是两种不同信号通路的靶点,因此可能参与细胞的有丝分裂反应。

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