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Free fatty-acid receptor 4 inhibitory signaling in delta cells regulates islet hormone secretion in mice

Marine L. Croze, Marcus F. Flisher, Arthur Guillaume, Caroline Tremblay, View ORCID ProfileGlyn M. Noguchi, Sabrina Granziera, View ORCID ProfileKevin Vivot, Vincent C. Castillo, Scott A. Campbell, View ORCID ProfileJulien Ghislain, View ORCID ProfileMark O. Huising, View ORCID ProfileVincent Poitout
doi: https://doi.org/10.1101/2020.07.17.208637
Marine L. Croze
1Montreal Diabetes Research Center, CRCHUM, Montréal, QC, Canada
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Marcus F. Flisher
2Department of Neurobiology, Physiology & Behavior, College of Biological Sciences, University of California Davis, Davis, CA, USA
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Arthur Guillaume
1Montreal Diabetes Research Center, CRCHUM, Montréal, QC, Canada
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Caroline Tremblay
1Montreal Diabetes Research Center, CRCHUM, Montréal, QC, Canada
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Glyn M. Noguchi
2Department of Neurobiology, Physiology & Behavior, College of Biological Sciences, University of California Davis, Davis, CA, USA
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Sabrina Granziera
1Montreal Diabetes Research Center, CRCHUM, Montréal, QC, Canada
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Kevin Vivot
1Montreal Diabetes Research Center, CRCHUM, Montréal, QC, Canada
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Vincent C. Castillo
2Department of Neurobiology, Physiology & Behavior, College of Biological Sciences, University of California Davis, Davis, CA, USA
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Scott A. Campbell
1Montreal Diabetes Research Center, CRCHUM, Montréal, QC, Canada
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Julien Ghislain
1Montreal Diabetes Research Center, CRCHUM, Montréal, QC, Canada
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Mark O. Huising
2Department of Neurobiology, Physiology & Behavior, College of Biological Sciences, University of California Davis, Davis, CA, USA
3Department of Physiology and Membrane Biology, School of Medicine, University of California Davis, Davis, CA, USA
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Vincent Poitout
1Montreal Diabetes Research Center, CRCHUM, Montréal, QC, Canada
4Department of Medicine, Université de Montréal, Montréal, QC, Canada
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  • For correspondence: vincent.poitout@umontreal.ca
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ABSTRACT

Objective Maintenance of glucose homeostasis requires the precise regulation of hormone secretion from the endocrine pancreas. Free fatty-acid receptor 4 (FFAR4/GPR120) is a G protein-coupled receptor whose activation in islets of Langerhans promotes insulin and glucagon secretion and inhibits somatostatin secretion. However, the contribution of individual islet cell types (α, β, and δ cells) to the insulinotropic and glucagonotropic effects of GPR120 remains unclear. As gpr120 mRNA is enriched in somatostatin-secreting δ cells, we hypothesized that GPR120 activation stimulates insulin and glucagon secretion via inhibition of somatostatin release.

Methods Glucose tolerance tests were performed in mice after administration of the selective GPR120 agonist Compound A. Insulin, glucagon and somatostatin secretion were measured in static incubations of isolated mouse islets in response to endogenous (ω-3 polyunsaturated fatty acids) and/or pharmacological (Compound A and AZ-13581837) GPR120 agonists. The effect of Compound A on hormone secretion was tested further in islets isolated from mice with global or somatostatin cell-specific knockout of gpr120. Gpr120 expression was assessed in pancreatic sections by RNA in situ hybridization. Cyclic AMP (cAMP) and calcium dynamics in response to pharmacological GPR120 agonists were measured specifically in α, β and δ cells in intact islets using cAMPER and GCaMP6 reporter mice, respectively.

Results Acute exposure to Compound A increased glucose tolerance and circulating insulin and glucagon levels in vivo. Endogenous and/or pharmacological and GPR120 agonists reduced somatostatin secretion in isolated islets and concomitantly demonstrated dose-dependent potentiation of glucose-stimulated insulin secretion and arginine-stimulated glucagon secretion. Gpr120 was enriched in δ cells. Pharmacological GPR120 agonists reduced cAMP and calcium levels in δ cells but increased these signals in α and β cells. Compound A-mediated inhibition of somatostatin secretion was insensitive to pertussis toxin. The effect of Compound A on hormone secretion was completely absent in islets from mice with either global or somatostatin cell-specific deletion of gpr120 and was partially reduced upon blockade of somatostatin receptor signaling by cyclosomatostatin.

Conclusions Inhibitory GPR120 signaling in δ cells contributes to both insulin and glucagon secretion in part via mitigating somatostatin release.

Competing Interest Statement

The authors have declared no competing interest.

Footnotes

  • Declaration of interest: none

Copyright 
The copyright holder for this preprint is the author/funder, who has granted bioRxiv a license to display the preprint in perpetuity. It is made available under a CC-BY-NC-ND 4.0 International license.
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Posted January 11, 2021.
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Free fatty-acid receptor 4 inhibitory signaling in delta cells regulates islet hormone secretion in mice
Marine L. Croze, Marcus F. Flisher, Arthur Guillaume, Caroline Tremblay, Glyn M. Noguchi, Sabrina Granziera, Kevin Vivot, Vincent C. Castillo, Scott A. Campbell, Julien Ghislain, Mark O. Huising, Vincent Poitout
bioRxiv 2020.07.17.208637; doi: https://doi.org/10.1101/2020.07.17.208637
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Free fatty-acid receptor 4 inhibitory signaling in delta cells regulates islet hormone secretion in mice
Marine L. Croze, Marcus F. Flisher, Arthur Guillaume, Caroline Tremblay, Glyn M. Noguchi, Sabrina Granziera, Kevin Vivot, Vincent C. Castillo, Scott A. Campbell, Julien Ghislain, Mark O. Huising, Vincent Poitout
bioRxiv 2020.07.17.208637; doi: https://doi.org/10.1101/2020.07.17.208637

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