Buffet Camille, Catelli Maria-Grazia, Hecale-Perlemoine Karine, Bricaire Léopoldine, Garcia Camille, Gallet-Dierick Anne, Rodriguez Stéphanie, Cormier Françoise, Groussin Lionel
Endocrinology-Metabolism-Diabetes Department, Institut Cochin, Université Paris Descartes, CNRS (UMR8104), INSERM U1016, Paris, France.
Department of Endocrinology, Cochin Hospital, Paris, France.
PLoS One. 2015 Dec 21;10(12):e0145484. doi: 10.1371/journal.pone.0145484. eCollection 2015.
Serum stimulation of mammalian cells induces, via the MAPK pathway, the nuclear protein DUSP5 (dual-specificity phosphatase 5), which specifically interacts with and inactivates the ERK1/2 MAP kinases. However, molecular mechanisms underlying DUSP5 induction are not well known. Here, we found that the DUSP5 mRNA induction depends on a transcriptional regulation by the MAPK pathway, without any modification of the mRNA stability. Two contiguous CArG boxes that bind serum response factor (SRF) were found in a 1 Kb promoter region, as well as several E twenty-six transcription factor family binding sites (EBS). These sites potentially bind Elk-1, a transcription factor activated by ERK1/2. Using wild type or mutated DUSP5 promoter reporters, we demonstrated that SRF plays a crucial role in serum induction of DUSP5 promoter activity, the proximal CArG box being important for SRF binding in vitro and in living cells. Moreover, in vitro and in vivo binding data of Elk-1 to the same promoter region further demonstrate a role for Elk-1 in the transcriptional regulation of DUSP5. SRF and Elk-1 form a ternary complex (Elk-1-SRF-DNA) on DUSP5 promoter, consequently providing a link to an important negative feedback tightly regulating phosphorylated ERK levels.
血清刺激哺乳动物细胞通过丝裂原活化蛋白激酶(MAPK)途径诱导核蛋白双特异性磷酸酶5(DUSP5)的产生,该蛋白可特异性地与ERK1/2丝裂原活化蛋白激酶相互作用并使其失活。然而,DUSP5诱导的分子机制尚不清楚。在此,我们发现DUSP5 mRNA的诱导依赖于MAPK途径的转录调控,而mRNA稳定性未发生任何改变。在1 kb的启动子区域发现了两个与血清反应因子(SRF)结合的相邻CArG盒,以及几个Ets转录因子家族结合位点(EBS)。这些位点可能与Elk-1结合,Elk-1是一种由ERK1/2激活的转录因子。使用野生型或突变型DUSP5启动子报告基因,我们证明SRF在血清诱导DUSP5启动子活性中起关键作用,近端CArG盒对于SRF在体外和活细胞中的结合很重要。此外,Elk-1与同一启动子区域的体外和体内结合数据进一步证明了Elk-1在DUSP5转录调控中的作用。SRF和Elk-1在DUSP5启动子上形成三元复合物(Elk-1-SRF-DNA),从而为紧密调节磷酸化ERK水平的重要负反馈提供了联系。