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G Protein-selective GPCR Conformations Measured Using FRET Sensors in a Live Cell Suspension Fluorometer Assay
Published on: September 10, 2016
A live cell assay of GPCR coupling allows identification of optogenetic tools for controlling Go and Gi signaling
Edward R Ballister1, Jessica Rodgers1, Franck Martial1
1University of Manchester, Manchester, UK.
Background:
Animal opsins are light-sensitive G-protein-coupled receptors (GPCRs) that enable optogenetic control over the major heterotrimeric G-protein signaling pathways in animal cells. As such, opsins have potential applications in both biomedical research and therapy. Selecting the opsin with the best balance of activity and selectivity for a given application requires knowing their ability to couple to a full range of relevant Gα subunits. We present the GsX assay, a set of tools based on chimeric Gs subunits that transduce coupling of opsins to diverse G proteins into increases in cAMP levels, measured with a real-time reporter in living cells. We use this assay to compare coupling to Gi/o/t across a panel of natural and chimeric opsins selected for potential application in gene therapy for retinal degeneration.
Results:
Of the opsins tested, wild-type human rod opsin had the highest activity for chimeric Gs proxies for Gi and Gt (Gsi and Gst) and was matched in Go proxy (Gso) activity only by a human rod opsin/scallop opsin chimera. Rod opsin drove roughly equivalent responses via Gsi, Gso, and Gst, while cone opsins showed much lower activities with Gso than Gsi or Gst, and a human rod opsin/amphioxus opsin chimera demonstrated higher activity with Gso than with Gsi or Gst. We failed to detect activity for opsin chimeras bearing three intracellular fragments of mGluR6, and observed unexpectedly complex response profiles for scallop and amphioxus opsins thought to be specialized for Go.
Conclusions:
These results identify rod opsin as the most potent non-selective Gi/o/t-coupled opsin, long-wave sensitive cone opsin as the best for selectively activating Gi/t over Go, and a rod opsin/amphioxus opsin chimera as the best choice for selectively activating Go over Gi/t.
Insights
This study introduces the GsX assay to evaluate animal opsin coupling to G proteins for optogenetics. Rod opsin is identified as a potent, non-selective opsin, while others show selectivity for specific G protein pathways.
Area of Science:
- Optogenetics
- Molecular Biology
- Biomedical Research
Background:
- Animal opsins are light-sensitive G-protein-coupled receptors (GPCRs) crucial for optogenetic control.
- Understanding opsin coupling to Gα subunits is vital for biomedical research and gene therapy applications.
- The GsX assay was developed to measure opsin coupling to diverse G proteins via cAMP signaling.
Purpose of the Study:
- To compare the coupling activity and selectivity of various natural and chimeric opsins to Gi/o/t G proteins.
- To identify optimal opsins for potential gene therapy applications, particularly in retinal degeneration.
Main Methods:
- Development of the GsX assay using chimeric Gs subunits to report G protein activation.
- Real-time measurement of cAMP levels in living cells to quantify opsin-G protein coupling.
- Testing a panel of natural and chimeric opsins, including rod, cone, scallop, and amphioxus opsins.
Main Results:
- Wild-type human rod opsin exhibited high activity for Gi and Gt proxies (Gsi, Gst) and matched Go proxy (Gso) activity with a chimera.
- Cone opsins showed lower activity with Gso compared to Gsi or Gst.
- A rod opsin/amphioxus opsin chimera demonstrated enhanced activity with Gso over Gi/t.
Conclusions:
- Rod opsin is the most potent non-selective opsin for Gi/o/t coupling.
- Long-wave sensitive cone opsin is optimal for selectively activating Gi/t over Go.
- A rod opsin/amphioxus opsin chimera is best for selectively activating Go over Gi/t.
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