Bernadt Cory T, Rizzino Angie
Eppley Institute for Research in Cancer and Allied Diseases, University of Nebraska Medical Center, Omaha, Nebraska 68198, USA.
Mol Reprod Dev. 2003 Aug;65(4):353-65. doi: 10.1002/mrd.10313.
Embryonal carcinoma (EC) cells are used widely to study the molecular mechanisms that regulate the transcription of genes during mammalian embryogenesis. The type II transforming growth factor-beta receptor (TbetaR-II) gene is expressed at very low levels by mouse EC cells prior to differentiation. Differentiation of EC cells results in increases of both the steady-state levels of TbetaR-II mRNA and the activity of the TbetaR-II promoter. Several cis-regulatory elements have been shown previously to regulate the TbetaR-II gene. This study focuses on the role of a CCAAT box and three GC boxes in the regulation of the human and mouse TbetaR-II promoters in EC-differentiated cells. We demonstrate that the CCAAT box and two flanking GC boxes, Sp A and Sp B, function as positive regulatory elements in the human TbetaR-II promoter, and that the transcription factor complex NF-Y positively regulates the human TbetaR-II promoter through the CCAAT box motif. We also show that the CCAAT box and the downstream GC box Sp B, which are conserved between the human and mouse promoters, behave as positive regulatory elements in the mouse TbetaR-II promoter. In addition, we demonstrate that the transcription factor Sp1 can bind to the Sp B GC box in vitro. Finally, we show that a GC box located 25 bp upstream of the major transcription start site of the TbetaR-II gene plays a minimal role in the function of the TbetaR-II promoter in EC-differentiated cells. Together, our studies highlight important differences and similarities in the cis-regulatory elements that regulate the human and mouse TbetaR-II promoters.
胚胎癌(EC)细胞被广泛用于研究哺乳动物胚胎发育过程中调控基因转录的分子机制。在分化之前,小鼠EC细胞中II型转化生长因子-β受体(TbetaR-II)基因的表达水平非常低。EC细胞的分化导致TbetaR-II mRNA的稳态水平和TbetaR-II启动子的活性均增加。先前已证明有几个顺式调控元件可调节TbetaR-II基因。本研究聚焦于CCAAT框和三个GC框在EC分化细胞中对人和小鼠TbetaR-II启动子调控中的作用。我们证明,CCAAT框以及两个侧翼GC框Sp A和Sp B在人TbetaR-II启动子中作为正调控元件发挥作用,并且转录因子复合物NF-Y通过CCAAT框基序对人TbetaR-II启动子进行正调控。我们还表明,在人和小鼠启动子之间保守的CCAAT框和下游GC框Sp B在小鼠TbetaR-II启动子中作为正调控元件发挥作用。此外,我们证明转录因子Sp1在体外可与Sp B GC框结合。最后,我们表明位于TbetaR-II基因主要转录起始位点上游25 bp处的一个GC框在EC分化细胞中对TbetaR-II启动子的功能起最小作用。总之,我们的研究突出了调控人和小鼠TbetaR-II启动子的顺式调控元件中的重要差异和相似之处。