Nowakowski B E, Maurer R A
Department of Cell Biology and Anatomy, Oregon Health Sciences University, Portland 97201.
Mol Endocrinol. 1994 Dec;8(12):1742-9. doi: 10.1210/mend.8.12.7708061.
Previous studies have shown that estrogen responsiveness of the rat PRL gene requires the presence of both the estrogen receptor and the tissue-specific transcription factor, Pit-1. To examine the contribution of individual Pit-1-binding sites in permitting an estrogen response, we mutated specific sites in both the proximal and distal regions of the rat PRL gene. The studies reveal that mutation of Pit-1-binding sites in either the proximal or the distal region can have an effect on estrogen responsiveness. The most important Pit-1-binding site appears to be the site in the distal enhancer, which is adjacent to the estrogen receptor-binding site. However, mutation of combinations of other Pit-1-binding sites reveals that these sites also contribute to the estrogen response of the PRL gene. The binding sequences for another transcription factor cannot substitute for Pit-1 sites in bringing about a wild-type estrogen response, as shown by replacement of Pit-1-binding sites with a consensus cAMP-responsive element. Conversion of the imperfect palindromic estrogen response element of the PRL gene to a perfect palindrome eliminated the positive effects of an intact 1D Pit-1-binding site. To examine potential physical interactions between the estrogen receptor and Pit-1, a protein interaction assay was performed. The results demonstrate that labeled estrogen receptor can bind to Pit-1 immobilized on glutathione agarose beads. However, most of the interaction between Pit-1 and the estrogen receptor appears to be DNA dependent.(ABSTRACT TRUNCATED AT 250 WORDS)
先前的研究表明,大鼠催乳素(PRL)基因的雌激素反应性需要雌激素受体和组织特异性转录因子Pit-1同时存在。为了研究单个Pit-1结合位点在介导雌激素反应中的作用,我们对大鼠PRL基因近端和远端区域的特定位点进行了突变。研究发现,近端或远端区域的Pit-1结合位点突变均可影响雌激素反应性。最重要的Pit-1结合位点似乎位于远端增强子中,与雌激素受体结合位点相邻。然而,其他Pit-1结合位点组合的突变表明,这些位点也对PRL基因的雌激素反应有贡献。如用共有cAMP反应元件替换Pit-1结合位点所示,另一种转录因子的结合序列不能替代Pit-1位点来产生野生型雌激素反应。将PRL基因不完美的回文雌激素反应元件转换为完美回文消除了完整的ID Pit-1结合位点的积极作用。为了检测雌激素受体与Pit-1之间潜在的物理相互作用,进行了蛋白质相互作用分析。结果表明,标记的雌激素受体可与固定在谷胱甘肽琼脂糖珠上的Pit-1结合。然而,Pit-1与雌激素受体之间的大多数相互作用似乎依赖于DNA。(摘要截短于250字)