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Published on: July 3, 2015
Dual signal transduction through delta opioid receptors in a transfected human T-cell line
B M Sharp1, N A Shahabi, W Heagy
1Endocrine-Neuroscience Research Laboratory, Minneapolis Medical Research Foundation, MN, USA.
Abstract:
Opiates are known to function as immunomodulators, in part by effects on T cells. However, the signal transduction pathways mediating the effects of opiates on T cells are largely undefined. To determine whether pathways that regulate free intracellular calcium ([Ca2+]i) and/or cAMP are affected by opiates acting through delta-type opioid receptors (DORs), a cDNA encoding the neuronal DOR was expressed in a stably transfected Jurkat T-cell line. The DOR agonists, deltorphin and [D-Ala2, D-Leu5]-enkephalin (DADLE), elevated [Ca2+]i, measured by flow cytofluorometry using the calcium-sensitive dye, Fluo-3. At concentrations from 10(-11)-10(-7) M, both agonists increased [Ca2+]i from 60 nM to peak concentrations of 400 nM in a dose-dependent manner within 30 sec (ED50 of approximately 5 x 10(-9) M). Naltrindole, a selective DOR antagonist, abolished the increase in [Ca2+]i, and pretreatment with pertussis toxin was also effective. To assess the role of extracellular calcium, cells were pretreated with EGTA, which reduced the initial deltorphin-induced elevation of [Ca2+]i by more than 50% and eliminated the second phase of calcium mobilization. Additionally, the effect of DADLE on forskolin-stimulated cAMP production was determined. DADLE reduced cAMP production by 70% (IC50 of approximately equal to 10(-11) M), and pertussis toxin inhibited the action of DADLE. Thus, the DOR expressed by a transfected Jurkat T-cell line is positively coupled to pathways leading to calcium mobilization and negatively coupled to adenylate cyclase. These studies identify two pertussis toxin-sensitive, G protein-mediated signaling pathways through which DOR agonists regulate the levels of intracellular messengers that modulate T-cell activation.
Insights
Opiate effects on T cells involve delta-type opioid receptors (DORs) influencing calcium and cAMP levels. These findings reveal G protein-mediated pathways regulating T-cell activation.
Area of Science:
- Immunology
- Neuroscience
- Cell Biology
Background:
- Opiates modulate immune responses, particularly T cell function.
- Signal transduction pathways for opiate effects on T cells are not well understood.
Purpose of the Study:
- To investigate if delta-type opioid receptors (DORs) affect intracellular calcium ([Ca2+]i) and cAMP pathways in T cells.
- To elucidate the signaling mechanisms of DORs in T cell activation.
Main Methods:
- Expressed neuronal DOR in a Jurkat T-cell line.
- Measured [Ca2+]i using Fluo-3 and flow cytofluorometry.
- Assessed cAMP production in response to DOR agonists and pertussis toxin.
Main Results:
- DOR agonists (deltorphin, DADLE) dose-dependently increased [Ca2+]i via pertussis toxin-sensitive pathways.
- Extracellular calcium is crucial for the initial and sustained [Ca2+]i elevation.
- DOR agonists inhibited forskolin-stimulated cAMP production through pertussis toxin-sensitive G proteins.
Conclusions:
- DORs in T cells activate calcium mobilization pathways.
- DORs negatively regulate adenylate cyclase activity.
- Identified G protein-mediated signaling pathways through which DORs modulate T-cell activation.
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