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Updated: Jan 29, 2026

Measuring G-protein-coupled Receptor Signaling via Radio-labeled GTP Binding
Published on: June 9, 2017
Regulation of ovarian cancer G protein-coupled receptor-1 expression and signaling
Ajay P Nayak1, Tonio Pera1, Deepak A Deshpande1
1Department of Medicine, Center for Translational Medicine and Division of Pulmonary, Allergy and Critical Care Medicine; and Jane & Leonard Korman Respiratory Institute, Thomas Jefferson University, Philadelphia, Pennsylvania.
Abstract:
Ovarian cancer G protein-coupled receptor 1 (OGR1) is a recently deorphanized G protein-coupled receptor shown to signal in response to low extracellular pH (↓pHo) or certain benzodiazepines. The pleiotropic nature of OGR1 signaling in human airway smooth muscle (HASM) cells suggests that OGR1 is a potential therapeutic target for the management of obstructive lung diseases. However, the basic pharmacological and regulatory features of OGR1 remain poorly understood. We employed model systems of heterologously expressed [human embryonic kidney 293 (HEK293) cells] or endogenous (HASM) OGR1 to assess changes in expression, subcellular localization, and signaling capabilities following acute or chronic treatment with ↓pHo or the benzodiazepines lorazepam and sulazepam. In HEK293 cells expressing OGR1, treatment with ↓pHo and/or lorazepam, but not sulazepam, caused rapid OGR1 internalization. In HASM cells, acute treatment with ↓pHo or benzodiazepines did not alter abundance of OGR1 mRNA; however, significant downregulation was observed following chronic treatment. Acute and chronic pretreatment of HASM cells with sulazepam or lorazepam resulted in receptor desensitization as demonstrated by reduced phosphorylation of vasodilator-stimulated phosphoprotein (VASP) or p42/p44 upon rechallenge. Acid (acute but not chronic) pretreatment of HASM cells induced desensitization of OGR1-mediated VASP (but not p42/p44) phosphorylation. In contrast to a recent study reporting OGR1 upregulation and sensitization in cardiac tissue subject to ischemic/acidic insult, chronic OGR1 activation in multiple model systems did not increase OGR1 expression or signaling capacity. The ability to induce OGR1 internalization and desensitization was activator dependent, reflecting the ability of different activators to induce specific receptor confirmations and engagement of specific heterotrimeric G proteins.
Insights
Ovarian cancer G protein-coupled receptor 1 (OGR1) signaling is complex. Chronic activation of OGR1 in airway cells leads to receptor downregulation and desensitization, suggesting therapeutic potential for lung diseases.
Area of Science:
- Pharmacology
- Molecular Biology
- Cell Biology
Background:
- Ovarian cancer G protein-coupled receptor 1 (OGR1) signals in response to low extracellular pH and benzodiazepines.
- OGR1's role in human airway smooth muscle (HASM) cells suggests therapeutic potential for obstructive lung diseases.
- The pharmacological and regulatory properties of OGR1 are not well understood.
Purpose of the Study:
- To investigate the expression, localization, and signaling of OGR1 in response to low pH and benzodiazepines.
- To assess the effects of acute and chronic OGR1 activation on HASM cells.
- To understand the basic pharmacological features of OGR1 for potential therapeutic applications.
Main Methods:
- Utilized HEK293 cells and HASM cells expressing OGR1.
- Assessed OGR1 expression, localization, and signaling.
- Administered acute and chronic treatments with low extracellular pH, lorazepam, and sulazepam.
- Measured OGR1 internalization, mRNA abundance, and VASP/p42/p44 phosphorylation.
Main Results:
- Low pH and lorazepam induced OGR1 internalization in HEK293 cells.
- Chronic low pH or benzodiazepine treatment downregulated OGR1 mRNA in HASM cells.
- Receptor desensitization was observed following chronic treatment with benzodiazepines or acute acid exposure.
- OGR1 activation did not increase expression or signaling capacity in chronic models.
Conclusions:
- OGR1 exhibits activator-dependent internalization and desensitization.
- Chronic OGR1 activation leads to downregulation and desensitization in HASM cells.
- These findings highlight OGR1 as a potential therapeutic target for obstructive lung diseases.
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