| Literature DB >> 25937173 |
Edward R Siuda1, Bryan A Copits2, Martin J Schmidt3, Madison A Baird3, Ream Al-Hasani3, William J Planer3, Samuel C Funderburk3, Jordan G McCall1, Robert W Gereau4, Michael R Bruchas5.
Abstract
Optogenetics is now a widely accepted tool for spatiotemporal manipulation of neuronal activity. However, a majority of optogenetic approaches use binary on/off control schemes. Here, we extend the optogenetic toolset by developing a neuromodulatory approach using a rationale-based design to generate a Gi-coupled, optically sensitive, mu-opioid-like receptor, which we term opto-MOR. We demonstrate that opto-MOR engages canonical mu-opioid signaling through inhibition of adenylyl cyclase, activation of MAPK and G protein-gated inward rectifying potassium (GIRK) channels and internalizes with kinetics similar to that of the mu-opioid receptor. To assess in vivo utility, we expressed a Cre-dependent viral opto-MOR in RMTg/VTA GABAergic neurons, which led to a real-time place preference. In contrast, expression of opto-MOR in GABAergic neurons of the ventral pallidum hedonic cold spot led to real-time place aversion. This tool has generalizable application for spatiotemporal control of opioid signaling and, furthermore, can be used broadly for mimicking endogenous neuronal inhibition pathways.Entities:
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Year: 2015 PMID: 25937173 PMCID: PMC4441608 DOI: 10.1016/j.neuron.2015.03.066
Source DB: PubMed Journal: Neuron ISSN: 0896-6273 Impact factor: 17.173