Related Experiment Video
Updated: Jul 10, 2026

A Hormone-responsive 3D Culture Model of the Human Mammary Gland Epithelium
Published on: February 7, 2016
Hormonal regulation of Galphai2 and mPRalpha in immortalized human oviductal cell line OE-E6/E7
Kati S Mönkkönen1, Reza Aflatoonian, Kai-Fai Lee
1Department of Pharmacology and Toxicology, University of Kuopio, FIN-70211 Kuopio, Finland.
Abstract:
Heterotrimeric G proteins play a key role in membrane-mediated cell-signalling and hormonal regulation. Our earlier studies gave evidence of G protein subunit Galpha(i2) being under hormonal regulation in human in vivo. In this study, we used immortalized human oviduct epithelial cell line OE-E6/E7 as a model to study the hormonal regulation of Galpha(i2). We aimed at clarifying whether estradiol or progesterone could individually regulate the expression of Galpha(i2) and its potential signalling partners. Furthermore, we aimed to investigate which sex hormone receptors could potentially mediate the gene regulation in OE-E6/E7 cell line. OE-E6/E7 cells were cultured for 5 days with different concentrations of estradiol or progesterone. Quantitative real-time polymerase chain reaction (Q-PCR) was performed using cDNA of the hormone-treated cells to reveal any changes in gene expression. The presence of potential receptor targets in these cells was studied using PCR. Our data clearly showed that low concentrations of estradiol up-regulated the expression of Galpha(i2) gene and down-regulated the expression of membrane progesterone receptor mPRalpha gene in OE-E6/E7 cell line. Progesterone had no significant effect on Galpha(i2) gene expression, but it caused up-regulation of mPRalpha gene expression. In conclusion, it appears that sex hormones regulate the expression of Galpha(i2) and mPRalpha genes in a reverse manner in OE-E6/E7 cells. Our results suggest that estrogen receptor ERbeta mediates the regulatory effects of estradiol in these cells.
Related Concept Videos
GPCRs Regulate Adenylyl Cylase Activity
Two...
Feedback Regulation of Calcium Concentration
Various transmembrane receptors, such as G protein-coupled receptors (GPCRs), elicit a response to extracellular signals by increasing cytosolic calcium. Activated GPCRs...
Activation and Inactivation of G Proteins
Hormonal Regulation of the Menstrual Cycle
At puberty, GnRH begins a pulsatile release pattern, which triggers the anterior pituitary gland to secrete follicle-stimulating hormone (FSH) and luteinizing hormone (LH). The frequency and amplitude of GnRH pulses vary across the menstrual cycle, with faster pulses favoring LH release and slower pulses favoring FSH release.
Hormonal Control of the Ovarian Cycle
Before puberty, the hypothalamus releases GnRH in a low frequency, low amplitude pulsatile manner. This along with the immature hypothalamic-pituitary-gonadal axis activity, results in low estrogen levels and the absence of a fully functional ovarian cycle. At puberty, GnRH secretion increases in both frequency and...
Secondary Messengers in Hormone Action
Many hormones bind to transmembrane G protein-coupled receptors that connect to regulatory G proteins. These G proteins can then activate enzymes such as adenylyl cyclase or phospholipase C. Adenylyl cyclase converts ATP to cAMP, activating...

