Intra-islet α-cell Gs signaling promotes glucagon release.

Liu, Liu; El, Kimberley; Dattaroy, Diptadip; Barella, Luiz F; Cui, Yinghong; Gray, Sarah M; Guedikian, Carla; Chen, Min et al. · Nat Commun · 2024

basic_science · Level V

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Abstract

Glucagon, a hormone released from pancreatic α-cells, is critical for maintaining euglycemia and plays a key role in the pathophysiology of diabetes. To stimulate the development of new classes of therapeutic agents targeting glucagon release, key α-cell signaling pathways that regulate glucagon secretion need to be identified. Here, we focused on the potential importance of α-cell G<sub>s</sub> signaling on modulating α-cell function. Studies with α-cell-specific mouse models showed that activation of α-cell G<sub>s</sub> signaling causes a marked increase in glucagon secretion. We also found that intra-islet adenosine plays an unexpected autocrine/paracrine role in promoting glucagon release via activation of α-cell G<sub>s</sub>-coupled A<sub>2A</sub> adenosine receptors. Studies with α-cell-specific Gα<sub>s</sub> knockout mice showed that α-cell G<sub>s</sub> also plays an essential role in stimulating the activity of the Gcg gene, thus ensuring proper islet glucagon content. Our data suggest that α-cell enriched G<sub>s</sub>-coupled receptors represent potential targets for modulating α-cell function for therapeutic purposes.

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