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Oxytocin stimulation of RGS2 mRNA expression in cultured human myometrial cells
Eun Sung Park1, Clement O Echetebu, Solweig Soloff
1Department of Obstetrics and Gynecology, University of Texas Medical Branch, Galveston, Texas 77555-1062, USA.
Abstract:
Regulators of G protein signaling (RGS proteins) interact with Galpha(q) and Galpha(i) and accelerate GTPase activity. These proteins have been characterized only within the past few years, so our understanding of their importance is still preliminary. We examined the effect of oxytocin on RGS2 mRNA expression to help determine the role of RGS proteins in oxytocin signaling in human myometrial cells in primary culture. Oxytocin increased RGS2 mRNA concentration maximally by 1 or 2 h in a dose-dependent and agonist-specific manner. RGS2 mRNA levels were also elevated by treatment with Ca(2+) ionophore, phorbol ester, or forskolin. Oxytocin's effects were completely inhibited by an intracellular Ca(2+) chelator and partially blocked by a protein kinase C inhibitor, indicating that intracellular Ca(2+) concentration is the primary signal for oxytocin elevation of RGS2 mRNA levels. Use of pharmacological inhibitors indicated that part of oxytocin-stimulated RGS2 mRNA expression is mediated by G(i)/tyrosine kinase activities. Although oxytocin does not stimulate increases in intracellular cAMP concentration, agents that elevate intracellular cAMP concentrations and cause myometrial relaxation may possibly cause heterologous desensitization to oxytocin via RGS2 expression. These results suggest that RGS2 may be important in regulating the myometrial response to oxytocin.
Insights
Oxytocin increases RGS2 mRNA in human myometrial cells, primarily via intracellular calcium signaling. This suggests Regulators of G protein signaling (RGS2) plays a key role in oxytocin signaling.
Area of Science:
- Molecular biology
- Cell signaling
- Endocrinology
Background:
- Regulators of G protein signaling (RGS proteins) modulate G protein activity.
- The role of RGS proteins in oxytocin signaling is not fully understood.
- Oxytocin is a key hormone regulating myometrial contractions.
Purpose of the Study:
- To investigate the effect of oxytocin on RGS2 mRNA expression in human myometrial cells.
- To elucidate the signaling pathways involved in oxytocin-induced RGS2 mRNA regulation.
Main Methods:
- Primary human myometrial cell culture.
- Quantitative analysis of RGS2 mRNA expression via RT-PCR.
- Pharmacological manipulation using ionophores, activators, inhibitors, and chelators.
Main Results:
- Oxytocin dose-dependently and specifically increased RGS2 mRNA levels.
- Intracellular calcium was identified as the primary mediator of oxytocin's effect.
- G(i)/tyrosine kinase pathways partially contributed to oxytocin-stimulated RGS2 expression.
Conclusions:
- RGS2 mRNA expression is regulated by oxytocin in human myometrial cells.
- Intracellular calcium signaling is crucial for this regulation.
- RGS2 may play a significant role in modulating the myometrial response to oxytocin.

