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Titrating the expression of a Gi protein-coupled receptor using an ecdysone-inducible system in CHO-K1 cells
S L Cole1, M Schindler, L A Sellers
1Glaxo Institute of Applied Pharmacology, Department of Pharmacology, University of Cambridge, Tennis Court Road, Cambridge, CB2 1QJ, United Kingdom. slc77453@glaxowellcome.co.uk
Abstract:
Changes in receptor density are often associated with pathological conditions. For example, high levels of the G protein-coupled somatostatin receptor, sst2, have been detected in a number of malignant cell types, a characteristic feature that is routinely utilised as a diagnostic tool. However, how the increased receptor expression affects cellular function through alterations in G protein-coupling or changes in the intensity or duration of activated signalling pathways is poorly understood. The current report details the use of an ecdysone-inducible expression system in CHO-K1 cells, whereby the consequence of modulating the level of human sst2 receptor expression on specific transduction events can be examined. A time- and concentration-dependent induction of sst2 receptor expression was attained by exposure of cells to the ecdysteroid-inducing agent, muristerone A (MuA). Increases in sst2 receptor expression were determined by immunoassay, immunoblotting and immunocytochemical analysis. Maximal sst2 receptor expression was obtained after treatment of cells with 7 microM MuA for 24 h. Functionality of the sst2 receptor was assessed by immunoblot analysis of phosphorylated forms of MAP kinase. Following receptor activation, time-dependent increases in the level of MAP kinase phosphorylation were shown to correlate with the degree of sst2 receptor induction. Confirmation of receptor activation was determined by visualisation of ligand-induced redistribution of sst2 receptors from the plasma membrane to discrete intracellular compartments. However, in a series of further studies, both immunocytochemical and fluorescence-activated cell sorting (FACS) analyses demonstrated that over a prolonged period, stable receptor expression could not be maintained in CHO-K1 cells using this expression system. Thus, routine analysis of the sst2 receptor expressing cell population is required to derive comparable results between assays, especially when some assays provide information from the whole cell population whilst others are based at the single cell level. On the basis of these observations we conclude that, providing such quality control measurements are taken, the ecdysone inducible expression system is a useful tool to modulate functional sst2 receptor expression in an in vitro environment over short time periods.
Insights
This study demonstrates an ecdysone-inducible system effectively modulates somatostatin receptor 2 (sst2) expression in CHO-K1 cells for short-term studies. Careful monitoring is needed due to unstable long-term expression.
Area of Science:
- Molecular Biology
- Cell Signaling
- Receptor Pharmacology
Background:
- Altered receptor density, particularly elevated G protein-coupled somatostatin receptor 2 (sst2), is linked to pathological conditions like cancer.
- The functional consequences of increased sst2 expression on cellular signaling pathways remain poorly understood.
- Investigating receptor modulation requires robust experimental systems to study cellular responses.
Purpose of the Study:
- To utilize an ecdysone-inducible expression system to modulate human sst2 receptor levels in CHO-K1 cells.
- To examine the impact of varying sst2 expression on intracellular signal transduction events.
- To assess the functionality and stability of the induced sst2 receptor expression in vitro.
Main Methods:
- Established an ecdysone-inducible system in CHO-K1 cells for controlled human sst2 receptor expression.
- Induced sst2 expression using muristerone A (MuA) and quantified receptor levels via immunoassay, immunoblotting, and immunocytochemistry.
- Assessed receptor functionality by measuring MAP kinase phosphorylation and receptor localization using immunocytochemistry and FACS.
Main Results:
- Achieved time- and concentration-dependent induction of sst2 receptor expression with maximal levels at 7 μM MuA for 24 hours.
- Demonstrated a correlation between increased sst2 expression and enhanced MAP kinase phosphorylation upon receptor activation.
- Observed ligand-induced sst2 receptor redistribution and noted that stable expression could not be maintained long-term.
Conclusions:
- The ecdysone-inducible system is a valuable tool for modulating functional sst2 receptor expression in vitro over short durations.
- Routine quality control is essential for comparable results, especially when comparing whole-cell assays with single-cell analyses.
- Further research is needed to understand the long-term stability and signaling dynamics of modulated receptor expression.