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Tracking Drug-induced Changes in Receptor Post-internalization Trafficking by Colocalizational Analysis
Published on: July 3, 2015
PI3K class II α regulates δ-opioid receptor export from the trans-Golgi network
Daniel J Shiwarski1,2, Marlena Darr1, Cheryl A Telmer1
1Department of Biological Sciences, Carnegie Mellon University, Pittsburgh, PA 15213.
Abstract:
The interplay between signaling and trafficking by G protein-coupled receptors (GPCRs) has focused mainly on endocytic trafficking. Whether and how surface delivery of newly synthesized GPCRs is regulated by extracellular signals is less understood. Here we define a signaling-regulated checkpoint at the trans-Golgi network (TGN) that controls the surface delivery of the delta opioid receptor (δR). In PC12 cells, inhibition of phosphoinositide-3 kinase (PI3K) activity blocked export of newly synthesized δR from the Golgi and delivery to the cell surface, similar to treatment with nerve growth factor (NGF). Depletion of class II phosphoinositide-3 kinase α (PI3K C2A), but not inhibition of class I PI3K, blocked δR export to comparable levels and attenuated δR-mediated cAMP inhibition. NGF treatment displaced PI3K C2A from the Golgi and optogenetic recruitment of the PI3K C2A kinase domain to the TGN-induced δR export downstream of NGF. Of importance, PI3K C2A expression promotes export of endogenous δR in primary trigeminal ganglion neurons. Taken together, our results identify PI3K C2A as being required and sufficient for δR export and surface delivery in neuronal cells and suggest that it could be a key modulator of a novel Golgi export checkpoint that coordinates GPCR delivery to the surface.
Insights
This study reveals a novel Golgi checkpoint regulating the surface delivery of delta opioid receptors (δR). Phosphoinositide-3 kinase C2 alpha (PI3K C2A) is crucial for this process in neuronal cells.
Area of Science:
- Cell Biology
- Neuroscience
- Molecular Pharmacology
Background:
- G protein-coupled receptors (GPCRs) signaling and trafficking are primarily studied via endocytosis.
- Regulation of newly synthesized GPCRs' surface delivery by extracellular signals remains largely unknown.
Purpose of the Study:
- To investigate the regulation of delta opioid receptor (δR) surface delivery by extracellular signals.
- To identify signaling pathways controlling GPCR export from the Golgi.
Main Methods:
- Utilized PC12 cells and primary trigeminal ganglion neurons.
- Employed phosphoinositide-3 kinase (PI3K) inhibition and depletion (PI3K C2A).
- Used nerve growth factor (NGF) treatment and optogenetics for pathway manipulation.
Main Results:
- Inhibition of PI3K blocked δR export from the Golgi to the cell surface.
- Depletion of PI3K C2A, but not class I PI3K, inhibited δR export and attenuated receptor function.
- NGF treatment displaced PI3K C2A; optogenetic recruitment induced δR export.
- PI3K C2A expression promoted endogenous δR export in neurons.
Conclusions:
- PI3K C2A is essential and sufficient for δR export and surface delivery in neuronal cells.
- Identified a novel Golgi export checkpoint regulated by PI3K C2A.
- Suggests PI3K C2A coordinates GPCR surface delivery via a new Golgi export mechanism.
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