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Measuring G-protein-coupled Receptor Signaling via Radio-labeled GTP Binding
Published on: June 9, 2017
TDAG8 is a proton-sensing and psychosine-sensitive G-protein-coupled receptor
Ju-Qiang Wang1, Junko Kon, Chihiro Mogi
1Laboratory of Signal Transduction and Department of Cell Biology, Institute for Molecular and Cellular Regulation, Gunma University, Maebashi 371-8512, Japan.
Abstract:
T cell death-associated gene 8 (TDAG8) has been reported to be a receptor for psychosine. Ovarian cancer G-protein-coupled receptor 1 (OGR1) and GPR4, G-protein-coupled receptors (GPCRs) closely related to TDAG8, however, have recently been identified as proton-sensing or extracellular pH-responsive GPCRs that stimulate inositol phosphate and cAMP production, respectively. In the present study, we examined whether TDAG8 senses extracellular pH change. In the several cell types that were transfected with TDAG8 cDNA, cAMP was markedly accumulated in response to neutral to acidic extracellular pH, with a peak response at approximately pH 7.0-6.5. The pH effect was inhibited by copper ions and was reduced or lost in cells expressing mutated TDAG8 in which histidine residues were changed to phenylalanine. In the membrane fractions prepared from TDAG8-transfected cells, guanosine 5'-O-(3-thiotriphosphate) binding activity and adenylyl cyclase activity were remarkably stimulated in response to neutral and acidic pH. The concentration-dependent effect of extracellular protons on cAMP accumulation was shifted to the right in the presence of psychosine. The inhibitory psychosine effect was also observed for pH-dependent actions in OGR1- and GPR4-expressing cells but not for prostaglandin E(2)- and sphingosine 1-phosphate-induced actions in any pH in native and sphingosine 1-phosphate receptor-expressing cells. Glucosylsphingosine and sphingosylphosphorylcholine similarly inhibited the pH-dependent action, although to a lesser extent. Psychosine-sensitive and pH-dependent cAMP accumulation was also observed in mouse thymocytes. We concluded that TDAG8 is one of the proton-sensing GPCRs coupling to adenylyl cyclase and psychosine, and its related lysosphingolipids behave as if they were antagonists against protein-sensing receptors, including TDAG8, GPR4, and OGR1.
Insights
T cell death-associated gene 8 (TDAG8) acts as a proton-sensing receptor, mediating cAMP accumulation in response to extracellular pH changes. Related lysosphingolipids, like psychosine, function as antagonists to these pH-sensing receptors.
Area of Science:
- Biochemistry
- Molecular Biology
- Cell Biology
Background:
- T cell death-associated gene 8 (TDAG8) was previously identified as a psychosine receptor.
- Related G-protein-coupled receptors (GPCRs), OGR1 and GPR4, are known proton-sensors.
- The proton-sensing capabilities of TDAG8 remained largely unexplored.
Purpose of the Study:
- To investigate whether TDAG8 functions as a sensor for extracellular pH changes.
- To characterize the signaling pathways and molecular interactions involved in TDAG8's response to pH.
Main Methods:
- Transfection of various cell types with TDAG8 cDNA.
- Measurement of cyclic adenosine monophosphate (cAMP) accumulation under varying extracellular pH conditions.
- Assessment of guanosine 5'-O-(3-thiotriphosphate) binding and adenylyl cyclase activity in membrane fractions.
- Evaluation of the effects of copper ions, mutated TDAG8, and lysosphingolipids (psychosine, glucosylsphingosine, sphingosylphosphorylcholine) on TDAG8 activity.
Main Results:
- TDAG8-transfected cells exhibited significant cAMP accumulation in response to neutral to acidic extracellular pH (peak at pH 6.5-7.0).
- This pH-dependent response was inhibited by copper ions and diminished in cells with mutated TDAG8 (histidine to phenylalanine substitutions).
- Psychosine and related lysosphingolipids acted as antagonists, inhibiting the pH-dependent cAMP accumulation in TDAG8, OGR1, and GPR4 expressing cells.
Conclusions:
- TDAG8 is confirmed as a proton-sensing GPCR that couples to adenylyl cyclase.
- Lysosphingolipids, including psychosine, function as antagonists for proton-sensing receptors like TDAG8, GPR4, and OGR1.
- These findings reveal a novel role for TDAG8 in extracellular pH sensing and highlight the antagonistic role of lysosphingolipids in GPCR signaling.
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