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Intra-islet glucagon signaling is critical for maintaining glucose homeostasis.

Citation
Zhu, L., et al. “Intra-Islet Glucagon Signaling Is Critical For Maintaining Glucose Homeostasis.”. Jci Insight.
Center University of Pennsylvania
Author Lu Zhu, Diptadip Dattaroy, Jonathan Pham, Lingdi Wang, Luiz F Barella, Yinghong Cui, Kenneth J Wilkins, Bryan L Roth, Ute Hochgeschwender, Franz M Matschinsky, Klaus H Kaestner, Nicolai M Doliba, Jürgen Wess
Keywords G-protein coupled receptors, glucose metabolism, Islet cells, Metabolism
Abstract

Glucagon, a hormone released from pancreatic alpha-cells, plays a key role in maintaining proper glucose homeostasis and has been implicated in the pathophysiology of diabetes. In vitro studies suggest that intra-islet glucagon can modulate the function of pancreatic beta-cells. However, because of the lack of suitable experimental tools, the in vivo physiological role of this intra-islet cross-talk has remained elusive. To address this issue, we generated a novel mouse model that selectively expressed an inhibitory designer G protein-coupled receptor (Gi DREADD) in α-cells only. Drug-induced activation of this inhibitory designer receptor almost completely shut off glucagon secretion in vivo, resulting in significantly impaired insulin secretion, hyperglycemia, and glucose intolerance. Additional studies with mouse and human islets indicated that intra-islet glucagon stimulates insulin release primarily by activating β-cell GLP-1 receptors. These new findings strongly suggest that intra-islet glucagon signaling is essential for maintaining proper glucose homeostasis in vivo. Our work may pave the way toward the development of novel classes of antidiabetic drugs that act by modulating intra-islet cross-talk between α- and β-cells.

Year of Publication
2019
Journal
JCI insight
Volume
5
Date Published
04/2019
ISSN Number
2379-3708
DOI
10.1172/jci.insight.127994
Alternate Journal
JCI Insight
PMID
31012868
PMCID
PMC6542600
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