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Published on: August 13, 2019
Target specificity of selective estrogen receptor modulators within human endometrial cancer cells
Kelli S Bramlett1, Thomas P Burris
1Gene Regulation and Bone Research, Lilly Research Laboratories, Lilly Corporate Center, DC0434, Indianapolis, IN 46285, USA.
Abstract:
Selective estrogen receptor modulators (SERMs) are estrogen receptor (ER) ligands that function as antagonists in some tissues, but have either partial or full agonist activity in others. SERMs often display variable partial agonist activity in uterine tissues and this activity can be displayed in uterine cell lines such as the human Ishikawa endometrial adenocarcinoma cell line. In this study, we compared the effects of several ER ligands including some SERMs on alkaline phosphatase (AP) activity and the expression of an ER target gene, the progesterone receptor (PR), in Ishikawa cells. As expected, estradiol (E2) was a potent and efficacious activator of both AP activity and PR mRNA expression. 4-Hydroxytamoxifen (4OHT) stimulated AP activity to a level 47% of that of E2 (100nM), while CP 336156 (lasofoxifene) increased AP activity 18%. A benzothiophene, such as LY 117018, a raloxifene analog, stimulated AP even less with values approximately 11% of E2-stimulated levels. A pure antiestrogen, ICI 182,780 did not stimulate AP activity. Interestingly, when we examined the ability of these compounds to increase the expression of the ER target gene, PR, a different rank order of efficacy was detected. After E2, CP 336156 was the most efficacious in increasing PR mRNA with a maximal stimulation of 20% of E2 levels, while 4OHT stimulated only 17%. LY 117018 increased PR mRNA expression 8% while ICI 182,780 did not increase PR mRNA expression at all. These data illustrate the target specificity that a SERM is able to display within a single cell type independent of "tissue specificity" and differential levels of expression of various cofactors. While 4OHT is 160% more active than CP 336156 in terms of inducing AP activity in the Ishikawa cells, CP 336156 has equivalent activity as 4OHT when one examines the ability of these SERMs to induce PR mRNA expression. Since the stimulation of Ishikawa cells by ER ligands is often used to assess the potential in vivo uterotrophic activity, these data indicate that examination of several endpoints in these cells may be necessary in order to fully characterize the activity of SERMs.
Insights
Selective estrogen receptor modulators (SERMs) show varied effects on uterine cells. Different endpoints, like alkaline phosphatase activity and progesterone receptor expression, reveal distinct SERM activities within the same cell type.
Area of Science:
- Endocrinology
- Molecular Pharmacology
- Cancer Biology
Background:
- Selective estrogen receptor modulators (SERMs) exhibit tissue-specific agonist/antagonist activities.
- Uterine tissues and cell lines, such as Ishikawa cells, can display variable SERM partial agonist activity.
- Understanding SERM activity in vitro is crucial for predicting in vivo effects.
Purpose of the Study:
- To compare the effects of various estrogen receptor (ER) ligands, including SERMs, on alkaline phosphatase (AP) activity and progesterone receptor (PR) mRNA expression in Ishikawa cells.
- To investigate the target specificity of SERMs within a single cell type.
- To assess the utility of Ishikawa cells for characterizing SERM activity.
Main Methods:
- Ishikawa cells were treated with estradiol (E2), 4-hydroxytamoxifen (4OHT), CP 336156 (lasofoxifene), LY 117018, and ICI 182,780.
- Alkaline phosphatase (AP) activity was measured.
- Progesterone receptor (PR) mRNA expression was quantified.
Main Results:
- Estradiol (E2) potently activated both AP activity and PR mRNA expression.
- 4-Hydroxytamoxifen (4OHT) showed higher AP activity than CP 336156 and LY 117018, but CP 336156 was more efficacious in increasing PR mRNA expression.
- SERMs displayed differential activity profiles for AP activity and PR mRNA expression, highlighting target specificity within Ishikawa cells.
Conclusions:
- SERMs exhibit distinct target specificity within a single cell type, independent of tissue specificity.
- Assessing multiple endpoints, such as AP activity and PR mRNA expression, is essential for a comprehensive characterization of SERM activity in vitro.
- These findings suggest that evaluating various cellular responses is necessary to fully understand SERM pharmacology.
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