Zhang Shimin, Jonklaas Jacqueline, Danielsen Mark
Division of Molecular Pathobiology, Department of Environmental and Infectious Disease Sciences, American Registry of Pathology, Armed Forces Institute of Pathology, Washington, DC 20306, USA.
Steroids. 2007 Jun;72(6-7):600-8. doi: 10.1016/j.steroids.2007.03.012. Epub 2007 Apr 7.
Mifepristone is an antagonist of the glucocorticoid receptor (GR) that also has significant agonist activity in some cell types. We examined the partial agonist activity of mifepristone in COS-7 cells transfected with increasing amounts of a glucocorticoid receptor expression vector pmGR. As pmGR levels increased, the response of the reporter, pMTVCAT to dexamethasone increased, consistent with increasing levels of receptor expression; the response to mifepristone also increased but at a higher rate, resulting in increasing mifepristone agonist and decreasing antagonist activity. In contrast, increasing pMTVCAT levels increased CAT activity induced by both dexamethasone and mifepristone, but did not change the relative agonist activity of mifepristone. We also examined the relationship between agonist activity and receptor level in a series of clones of the E8.2.A3 cell line expressing various levels of GR. Again, the relative agonist activity of mifepristone increased as GR increased. This increase was not due to changes in the dose response curves to these two ligands since their EC50 values were independent of receptor levels. These results indicate that the degree of glucocorticoid agonist activity exhibited by mifepristone is dependent on the concentration of GR in the cell. Similar results were obtained with another partial agonist of the GR, progesterone, whereas the complete antagonist ZK98.299 had no agonist activity under any condition. Taken together, these results suggest that the phenomenon of receptor concentration-dependence is a property of partial GR agonists in general.
米非司酮是糖皮质激素受体(GR)的拮抗剂,但在某些细胞类型中也具有显著的激动剂活性。我们研究了米非司酮在转染了不同量糖皮质激素受体表达载体pmGR的COS-7细胞中的部分激动剂活性。随着pmGR水平的升高,报告基因pMTVCAT对地塞米松的反应增强,这与受体表达水平的增加一致;对米非司酮的反应也增强,但速率更高,导致米非司酮激动剂活性增加而拮抗剂活性降低。相反,增加pMTVCAT水平会增加地塞米松和米非司酮诱导的CAT活性,但不会改变米非司酮的相对激动剂活性。我们还研究了一系列表达不同水平GR的E8.2.A3细胞系克隆中激动剂活性与受体水平之间的关系。同样,随着GR增加,米非司酮的相对激动剂活性增加。这种增加不是由于这两种配体剂量反应曲线的变化,因为它们的EC50值与受体水平无关。这些结果表明,米非司酮表现出的糖皮质激素激动剂活性程度取决于细胞中GR的浓度。用GR的另一种部分激动剂孕酮也得到了类似的结果,而完全拮抗剂ZK98.299在任何条件下都没有激动剂活性。综上所述,这些结果表明受体浓度依赖性现象通常是GR部分激动剂的特性。