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生长激素因子-1/垂体特异性转录因子-1通过将Ras信号通路靶向复合Ets-1/生长激素因子-1反应元件,作为Ras信号的细胞特异性整合因子发挥作用。

GHF-1/Pit-1 functions as a cell-specific integrator of Ras signaling by targeting the Ras pathway to a composite Ets-1/GHF-1 response element.

作者信息

Bradford A P, Conrad K E, Tran P H, Ostrowski M C, Gutierrez-Hartmann A

机构信息

Department of Medicine, Program in Molecular Biology, and Colorado Cancer Center, University of Colorado Health Sciences Center, Denver, 80262, USA.

出版信息

J Biol Chem. 1996 Oct 4;271(40):24639-48. doi: 10.1074/jbc.271.40.24639.

Abstract

Activation of the rat prolactin (rPRL) promoter by Ras is a prototypical example of tissue-specific transcriptional regulation in a highly differentiated cell type. Using a series of site-specific mutations and deletions of the proximal rPRL promoter we have mapped the major Ras/Raf response element (RRE) to a composite Ets-1/GHF-1 binding site located between positions -217 and -190. Mutation of either the Ets-1 or GHF-1 binding sites inhibits Ras and Raf activation of the rPRL promoter, and insertion of this RRE into the rat growth hormone promoter confers Ras responsiveness. We show that Ets-1 is expressed in GH4 cells and, consistent with their functional synergistic interaction, both Ets-1 and GHF-1 are able to bind specifically to this bipartite RRE. We confirm that Ets-1 or a related Ets factor is the nuclear target of the Ras pathway leading to activation of the rPRL promoter and demonstrate that Elk-1 and Net do not mediate the Ras response. Thus, the pituitary-specific POU homeodomain transcription factor, GHF-1, serves as a cell-specific signal integrator by functionally interacting with an Ets-1-like factor, at uniquely juxtaposed binding sites, thereby targeting an otherwise ubiquitous Ras signaling pathway to a select subset of cell-specific GHF-1-dependent genes.

摘要

Ras对大鼠催乳素(rPRL)启动子的激活是高度分化细胞类型中组织特异性转录调控的典型例子。通过对近端rPRL启动子进行一系列位点特异性突变和缺失,我们已将主要的Ras/Raf反应元件(RRE)定位到位于-217至-190位之间的一个复合Ets-1/GHF-1结合位点。Ets-1或GHF-1结合位点的突变会抑制rPRL启动子的Ras和Raf激活,并且将该RRE插入大鼠生长激素启动子可赋予Ras反应性。我们发现Ets-1在GH4细胞中表达,并且与它们的功能协同相互作用一致,Ets-1和GHF-1都能够特异性结合到这个二分体RRE上。我们证实Ets-1或相关的Ets因子是导致rPRL启动子激活的Ras途径的核靶点,并证明Elk-1和Net不介导Ras反应。因此,垂体特异性POU同源域转录因子GHF-1通过在独特并列的结合位点与Ets-1样因子进行功能相互作用,作为细胞特异性信号整合器,从而将原本普遍存在的Ras信号通路靶向到细胞特异性GHF-1依赖性基因的一个选定子集。

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