首页> 美国卫生研究院文献>Molecular and Cellular Biology >Interaction of Serum Response Factor (SRF) with the Elk-1 B Box Inhibits RhoA-Actin Signaling to SRF and Potentiates Transcriptional Activation by Elk-1
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Interaction of Serum Response Factor (SRF) with the Elk-1 B Box Inhibits RhoA-Actin Signaling to SRF and Potentiates Transcriptional Activation by Elk-1

机译:血清反应因子(SRF)与Elk-1 B框的相互作用抑制RhoA-肌动蛋白信号转导到SRF并增强Elk-1的转录激活。

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摘要

Serum response factor (SRF) is a transcription factor which regulates many immediate-early genes. Rho GTPases regulate SRF activity through changes in actin dynamics, but some SRF target genes, such as c-fos, are insensitive to this pathway. At the c-fos promoter, SRF recruits members of the ternary complex factor (TCF) family of Ets domain proteins through interactions with the TCF B-box region. Analysis of c-fos promoter mutations demonstrates that the TCF and ATF/AP1 sites adjoining the SRF binding site inhibit activation of the promoter by RhoA-actin signaling. The presence of the TCF binding site is sufficient for inhibition, and experiments with an altered-specificity Elk-1 derivative demonstrate that inhibition can be mediated by the Elk-1 TCF. Using Elk-1 fusion proteins that can bind DNA autonomously, we show that inhibition of RhoA-actin signaling requires physical interaction between the Elk-1 B box and SRF. These results account for the insensitivity of c-fos to RhoA-actin signaling. Interaction of the B box with SRF also potentiates transcriptional activation by the Elk-1 C-terminal activation domain. Combinatorial interactions between SRF and TCF proteins are thus likely to play an important role in determining the relative sensitivity of SRF target genes to Ras- and Rho-controlled signal transduction pathways.
机译:血清反应因子(SRF)是一种转录因子,可调节许多早期基因。 Rho GTPases通过肌动蛋白动态变化来调节SRF活性,但是某些SRF靶基因(例如c-fos)对此途径不敏感。在c-fos启动子上,SRF通过与TCF B盒区域相互作用来募集Ets域蛋白的三元复合因子(TCF)家族成员。对c-fos启动子突变的分析表明,毗邻SRF结合位点的TCF和ATF / AP1位点可通过RhoA-肌动蛋白信号转导抑制启动子的激活。 TCF结合位点的存在足以抑制,并且用改变的特异性Elk-1衍生物进行的实验表明,抑制作用可以由Elk-1 TCF介导。使用可以自主结合DNA的Elk-1融合蛋白,我们表明抑制RhoA-肌动蛋白信号传导需要Elk-1 B框和SRF之间的物理相互作用。这些结果说明了c-fos对RhoA-肌动蛋白信号传导的不敏感性。 B盒与SRF的相互作用也增强了Elk-1 C端激活域的转录激活。因此,SRF和TCF蛋白之间的组合相互作用可能在确定SRF靶基因对Ras和Rho受控信号转导途径的相对敏感性中起重要作用。

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