Bradford A P, Wasylyk C, Wasylyk B, Gutierrez-Hartmann A
Department of Medicine, University of Colorado Health Sciences Center, Denver 80262, USA.
Mol Cell Biol. 1997 Mar;17(3):1065-74. doi: 10.1128/MCB.17.3.1065.
The pituitary-specific, POU-homeodomain factor GHF-1/Pit-1 is necessary, but not sufficient, for cell-specific expression of prolactin (PRL), growth hormone (GH), and thyrotropin. Combinatorial interactions of GHF-1 with other factors are likely to be required; however, such factors and their mechanisms of action remain to be elucidated. Here we identify Ets-1 as a factor that functionally and physically interacts with GHF-1 to fully reconstitute proximal PRL promoter activity. In contrast, Ets-2 has no effect, and the alternatively spliced GHF-2/Pit-1beta variant fails to synergize with Ets-1. The Ets-1-GHF-1 synergy requires a composite Ets-1-GHF-1 cis element and is dependent on an Ets-1-specific protein domain. Furthermore, the ancestrally related and GHF-1-dependent GH promoter, which lacks this composite element, does not exhibit this response. Finally, Ets-1, but not Ets-2, binds directly to GHF-1 and GHF-2. These data show that a functional interaction of GHF-1 and Ets-1, acting via a composite DNA element, is required to establish lactotroph-specific PRL gene expression, thus providing a molecular mechanism by which GHF-1 can discriminate between the GH and PRL genes. These results underscore the importance of transcription factors that are distinct from, but interact with, homeobox proteins to establish lineage-specific gene expression.
垂体特异性的POU-同源结构域因子GHF-1/Pit-1对于催乳素(PRL)、生长激素(GH)和促甲状腺激素的细胞特异性表达是必需的,但并非充分条件。GHF-1与其他因子的组合相互作用可能是必需的;然而,此类因子及其作用机制仍有待阐明。在此,我们鉴定出Ets-1作为一种在功能和物理上与GHF-1相互作用以完全重建PRL近端启动子活性的因子。相比之下,Ets-2没有作用,并且选择性剪接的GHF-2/Pit-1β变体无法与Ets-1协同作用。Ets-1与GHF-1的协同作用需要一个复合的Ets-1-GHF-1顺式元件,并且依赖于一个Ets-1特异性蛋白结构域。此外,缺乏这种复合元件的、与GHF-1相关且依赖于GHF-1的GH启动子不表现出这种反应。最后,Ets-1能直接与GHF-1和GHF-2结合,而Ets-2则不能。这些数据表明,GHF-1和Ets-1通过一个复合DNA元件进行功能性相互作用,对于建立泌乳细胞特异性的PRL基因表达是必需的,从而提供了一种分子机制,通过该机制GHF-1能够区分GH基因和PRL基因。这些结果强调了转录因子在建立谱系特异性基因表达中的重要性,这些转录因子不同于同源框蛋白,但与之相互作用。