Jeong Kyeong-Hoon, Chin William W, Kaiser Ursula B
Division of Endocrinology, Diabetes, and Hypertension, Department of Medicine, Brigham and Women's Hospital, Harvard Medical School, Boston, MA 02115, USA.
Mol Cell Biol. 2004 Jul;24(14):6127-39. doi: 10.1128/MCB.24.14.6127-6139.2004.
The gonadotropin-releasing hormone receptor (GnRHR) is expressed primarily in the gonadotropes of the anterior pituitary. Pituitary homeobox 1 (Pitx-1) has been shown to activate pituitary-specific gene expression by direct DNA binding and/or protein-protein interaction with other transcription factors. We hypothesized that Pitx-1 might also dictate tissue-specific expression of the mouse GnRHR (mGnRHR) gene in a similar manner. Pitx-1 activated the mGnRHR gene promoter, and transactivation was localized to sequences between -308 and -264. Pitx-1 bound to this region only with low affinity. This region includes an activating protein 1 (AP-1) site, which was previously shown to be important for mGnRHR gene expression. Further characterization indicated that an intact AP-1 site was required for full Pitx-1 responsiveness. Furthermore, Pitx-1 and AP-1 were synergistic in the activation of the mGnRHR gene promoter. A Pitx-1 homeodomain (HD) point mutation, which eliminated DNA binding ability, caused only a partial reduction of transactivation, whereas deletion of the HD completely prevented transactivation. Pitx-1 interacted directly with c-Jun, and the HD was sufficient for this interaction. While the point mutation in the Pitx-1 HD did not affect interaction with c-Jun, deletion of the HD eliminated the interaction. Taken together, our studies indicate that Pitx-1 can direct transactivation of the mGnRHR gene, in part by DNA binding and in part by an action of Pitx-1 as a cofactor for AP-1, augmenting AP-1 activity through a novel protein-protein interaction between c-Jun and the HD of Pitx-1.
促性腺激素释放激素受体(GnRHR)主要在前脑垂体的促性腺细胞中表达。垂体同源框1(Pitx-1)已被证明可通过直接结合DNA和/或与其他转录因子进行蛋白质-蛋白质相互作用来激活垂体特异性基因表达。我们推测,Pitx-1可能也以类似方式决定小鼠GnRHR(mGnRHR)基因的组织特异性表达。Pitx-1激活了mGnRHR基因启动子,反式激活定位于-308至-264之间的序列。Pitx-1仅以低亲和力结合该区域。该区域包含一个活化蛋白1(AP-1)位点,先前已证明该位点对mGnRHR基因表达很重要。进一步的表征表明,完整的AP-1位点是Pitx-1充分反应性所必需的。此外,Pitx-1和AP-1在激活mGnRHR基因启动子方面具有协同作用。一个消除DNA结合能力的Pitx-1同源结构域(HD)点突变仅导致反式激活部分降低,而HD的缺失则完全阻止了反式激活。Pitx-1直接与c-Jun相互作用,HD足以实现这种相互作用。虽然Pitx-1 HD中的点突变不影响与c-Jun的相互作用,但HD的缺失消除了这种相互作用。综上所述,我们的研究表明,Pitx-1可以部分通过DNA结合以及部分通过作为AP-1辅因子的作用来直接反式激活mGnRHR基因,通过c-Jun与Pitx-1的HD之间的新型蛋白质-蛋白质相互作用增强AP-1活性。