Quentien Marie-Hélène, Manfroid Isabelle, Moncet Daniel, Gunz Ginette, Muller Marc, Grino Michel, Enjalbert Alain, Pellegrini Isabelle
Laboratoire ICNE, CNRS UMR 6544-Université de la Méditerranée, Marseille, France.
J Biol Chem. 2002 Nov 15;277(46):44408-16. doi: 10.1074/jbc.M207824200. Epub 2002 Sep 9.
The pituitary-specific POU homeodomain factor Pit-1 likely interacts with other factors for cell-specific expression of prolactin. Here we identify the paired-like homeobox transcription factors Pitx1 and Pitx2 as factors functionally activating the proximal human prolactin promoter (hPRL-164luc). Using in vitro binding assays and a series of site-specific mutations of the proximal hPRL promoter, we mapped the B1 and B2 bicoid sites involved in Pitx-mediated transactivation of the hPRL-164luc construct. In somatolactotroph GH4C1 cells, basal proximal hPRL promoter activity was inhibited by a Pitx2 dominant-negative form in a dose-dependent manner, whereas binding disruptive mutations in the Pitx sites significantly reduced basal activity of the promoter. We also show that synergistic activation of hPRL-164luc by Pitx2 and Pit-1 requires the integrity of the B2 Pitx binding site, and at least one of the P1 and P2 Pit-1 response elements. In addition, mutation in the B2 Pitx site results in attenuation of the promoter's responsiveness to forskolin, thyrotropin-releasing hormone, and epidermal growth factor. Conversely, Pitx1 or Pitx2 overexpression in GH4C1 cells leads to an enhancement of the drugs stimulatory effects. Altogether, these results suggest that full responsiveness to several signaling pathways regulating the hPRL promoter requires the B2 Pitx binding site and that Pitx factors may be part of the proteic complex involved in these regulations. Finally, in situ hybridization analysis showing coexpression of the PRL and Pitx2 genes in rat and human lactotroph cells corroborates the physiological relevance of these results.
垂体特异性POU同源结构域因子Pit-1可能与其他因子相互作用,以实现催乳素的细胞特异性表达。在此,我们鉴定出配对样同源框转录因子Pitx1和Pitx2为功能性激活人催乳素近端启动子(hPRL-164luc)的因子。通过体外结合试验以及对hPRL近端启动子进行一系列位点特异性突变,我们确定了参与Pitx介导的hPRL-164luc构建体反式激活的B1和B2双尾蚴位点。在生长激素泌乳素细胞系GH4C1细胞中,Pitx2显性负性形式以剂量依赖方式抑制hPRL近端启动子的基础活性,而Pitx位点的结合破坏突变显著降低了启动子的基础活性。我们还表明,Pitx2和Pit-1对hPRL-164luc的协同激活需要B2 Pitx结合位点以及P1和P2 Pit-1反应元件中的至少一个保持完整。此外,B2 Pitx位点的突变导致启动子对福斯可林、促甲状腺激素释放激素和表皮生长因子的反应性减弱。相反,在GH4C1细胞中过表达Pitx1或Pitx2会增强药物的刺激作用。总之,这些结果表明,对几种调节hPRL启动子的信号通路的完全反应性需要B2 Pitx结合位点,并且Pitx因子可能是参与这些调节的蛋白质复合物的一部分。最后,原位杂交分析显示PRL和Pitx2基因在大鼠和人类泌乳素细胞中共表达,证实了这些结果的生理相关性。