Related Experiment Video
Updated: Mar 7, 2026

Induction and Diagnosis of Tumors in Drosophila Imaginal Disc Epithelia
Published on: July 25, 2017
Gs-DREADD Knock-In Mice for Tissue-Specific, Temporal Stimulation of Cyclic AMP Signaling
Dmitry Akhmedov1, Maria G Mendoza-Rodriguez1, Kavitha Rajendran1
1Department of Integrative Biology and Pharmacology, McGovern Medical School at The University of Texas Health Science Center at Houston, Houston, Texas, USA.
Abstract:
Hundreds of hormones and ligands stimulate cyclic AMP (cAMP) signaling in different tissues through the activation of G-protein-coupled receptors (GPCRs). Although the functions and individual effectors of cAMP signaling are well characterized in many tissues, pleiotropic effects of GPCR agonists limit investigations of physiological functions of cAMP signaling in individual cell types at different developmental stages in vivo To facilitate studies of cAMP signaling in specific cell populations in vivo, we harnessed the power of DREADD (designer receptors exclusively activated by designer drugs) technology by creating ROSA26-based knock-in mice for the conditional expression of a Gs-coupled DREADD (rM3Ds-green fluorescent protein [GFP], or "GsD"). After Cre recombinase expression, GsD is activated temporally by the administration of the ligand clozapine N-oxide (CNO). In the same allele, we engineered a CREB-luciferase reporter transgene for noninvasive bioluminescence monitoring of CREB activity. After viral delivery of Cre recombinase to hepatocytes in vivo, GsD is expressed and allows CNO-dependent cAMP signaling and glycogen breakdown. The long-term expression of GsD in the liver results in constitutive CREB activity and hyperglycemia. ROSA26-Gs-DREADD mice can be used to study the physiological effects of cAMP signaling, acute or chronic, in liver or any tissue or cell type for which transgenic or viral Cre drivers are available.
Insights
Researchers developed novel Gs-DREADD mice to precisely control cyclic AMP (cAMP) signaling in specific cells. This allows for detailed in vivo studies of cAMP
Area of Science:
- Pharmacology
- Molecular Biology
- Physiology
Background:
- G-protein-coupled receptors (GPCRs) activate cyclic AMP (cAMP) signaling pathways.
- Investigating cAMP's physiological roles in specific cells in vivo is challenging due to pleiotropic effects of GPCR agonists.
Purpose of the Study:
- To develop a system for cell-specific, inducible control of cAMP signaling in vivo.
- To enable noninvasive monitoring of cAMP pathway activity.
Main Methods:
- Created ROSA26-based knock-in mice for conditional Gs-coupled DREADD (GsD) expression.
- Utilized Cre-lox system for temporal and spatial GsD induction.
- Incorporated a CREB-luciferase reporter for bioluminescence imaging.
- Administered clozapine N-oxide (CNO) to activate GsD.
Main Results:
- GsD expression in hepatocytes enabled CNO-dependent cAMP signaling and glycogenolysis.
- Long-term GsD expression led to constitutive CREB activity and hyperglycemia.
- Demonstrated feasibility of studying cAMP signaling in specific cell types.
Conclusions:
- ROSA26-Gs-DREADD mice provide a powerful tool for investigating cAMP signaling.
- This system facilitates acute and chronic studies of cAMP's physiological effects in various tissues.
- Enables research in any cell type with available Cre drivers.

