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Published on: March 30, 2018
δ-opioid receptor activation leads to neurite outgrowth and neuronal differentiation via a STAT5B-Gαi/o pathway
Eirini-Maria Georganta1, Lambrini Tsoutsi, Maria Gaitanou
1Laboratory of Cellular Signalling and Molecular Pharmacology, Institute of Biosciences and Applications, National Centre for Scientific Research "Demokritos", Athens, Greece.
Abstract:
It remains unclear how opioid receptors (δ, μ, κ) are implicated in mechanisms controlling differentiation, cell proliferation, and survival. Opioid receptors are coupled to Gi/Go proteins and recent findings have shown that opioid receptors can form a multicomponent signaling complex, consisting of members of G protein and the signal transducer and activator of transcription (STAT)5B. We thus wondered whether activation of the opioid receptors could direct differentiation and neurite outgrowth through a molecular pathway involving STAT5B and other signaling intermediates. We demonstrate that prolonged δ-opioid receptor (δ-OR) activation with opioid agonists induces STAT5B phosphorylation in Neuro-2A cells. Moreover, [D-Ser2, Leu5, Thr6]-enkephalin-activation of δ-OR triggers neurite outgrowth and neuronal survival; these effects are blocked by the selective antagonist naltrindole, by treatment with pertussis toxin, and after expression of a dominant negative mutant of STAT5B (DN-STAT5B), suggesting that the signaling pathway participating in this mechanism involves Gi/o proteins and p-STAT5B. Additional studies have shown that while [D-Ser(2) , Leu(5) , Thr(6) ]-enkephalin exposure of neuroblastoma cells induces a marked increase in the differentiation marker proteins, βIII-tubulin (Tuj-1), synaptophysin, and neural cell adhesion molecule, over-expression of the DN-STAT5B attenuated significantly their expression levels. Taken together, our findings demonstrate that δ-OR activation leads to a number of neurotropic events via a Gαi/o-linked and STAT5B-dependent manner. We propose a novel signalling pathway for δ-opioid receptor (δ-ΟR)-mediated neurotropic events. STAT5B interacts with the δ-ΟR and upon prolonged receptor activation phosphorylates STAT5B in a Gi/Go dependent manner leading to increased neuronal survival, neurite outgrowth and differentiation. These findings contribute to a better understanding of the molecular and cellular events following δ-OR activation and suggest a possible neuroprotective role opioids could exert.
Insights
Activation of delta-opioid receptors (δ-OR) promotes neuronal survival and differentiation via a pathway involving Gi/o proteins and STAT5B phosphorylation. This uncovers a novel signaling mechanism for δ-OR-mediated neurotropic events.
Area of Science:
- Neuroscience
- Molecular Biology
- Pharmacology
Background:
- The precise roles of opioid receptors (δ, μ, κ) in neuronal differentiation, proliferation, and survival remain incompletely understood.
- Opioid receptors signal through Gi/Go proteins and can form complexes with STAT5B, suggesting a potential role in downstream signaling.
Purpose of the Study:
- To investigate whether opioid receptor activation influences neuronal differentiation and neurite outgrowth via a molecular pathway involving STAT5B.
- To elucidate the signaling intermediates and mechanisms underlying δ-opioid receptor (δ-OR)-mediated neurotropic effects.
Main Methods:
- Neuro-2A cells were treated with opioid agonists to activate δ-OR.
- Analysis of STAT5B phosphorylation, neurite outgrowth, and expression of differentiation markers (βIII-tubulin, synaptophysin, neural cell adhesion molecule).
- Involvement of Gi/o proteins and STAT5B was assessed using pertussis toxin, a selective δ-OR antagonist (naltrindole), and dominant-negative STAT5B (DN-STAT5B).
Main Results:
- Prolonged δ-OR activation induced STAT5B phosphorylation and triggered neurite outgrowth and neuronal survival in Neuro-2A cells.
- These effects were abrogated by naltrindole, pertussis toxin, and DN-STAT5B expression, confirming the involvement of Gi/o proteins and p-STAT5B.
- DN-STAT5B overexpression significantly attenuated the expression of key neuronal differentiation markers.
Conclusions:
- δ-Opioid receptor activation promotes neurotropic events, including neuronal survival, neurite outgrowth, and differentiation, through a Gi/o-linked and STAT5B-dependent pathway.
- A novel signaling pathway is proposed where STAT5B interacts with δ-OR, leading to its phosphorylation and subsequent neurotrophic effects.
- These findings highlight a potential neuroprotective role for opioids mediated by δ-OR signaling.
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