Intra-islet glucagon signalling regulates beta-cell connectivity, first-phase insulin secretion and glucose homoeostasis

Type 2 diabetes (T2D) is characterised by the loss of first-phase insulin secretion. We studied mice with β-cell selective loss of the glucagon receptor (Gcgrfl/fl X Ins-1Cre), to investigate the role of intra-islet glucagon receptor (GCGR) signalling on pan-islet [Ca2+]I activity and insulin secret...

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Veröffentlicht in:Molecular metabolism (Germany) 2024-07, Vol.85, p.101947, Article 101947
Hauptverfasser: Suba, K., Patel, Y., Martin-Alonso, A., Hansen, B., Xu, X., Roberts, A., Norton, M., Chung, P., Shrewsbury, J., Kwok, R., Kalogianni, V., Chen, S., Liu, X., Kalyviotis, K., Rutter, G.A., Jones, B., Minnion, J., Owen, B.M., Pantazis, P., Distaso, W., Drucker, D.J., Tan, T.M., Bloom, S.R., Murphy, K.G., Salem, V.
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Sprache:eng
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Zusammenfassung:Type 2 diabetes (T2D) is characterised by the loss of first-phase insulin secretion. We studied mice with β-cell selective loss of the glucagon receptor (Gcgrfl/fl X Ins-1Cre), to investigate the role of intra-islet glucagon receptor (GCGR) signalling on pan-islet [Ca2+]I activity and insulin secretion. Metabolic profiling was conducted on Gcgrβ-cell−/− and littermate controls. Crossing with GCaMP6f (STOP flox) animals further allowed for β-cell specific expression of a fluorescent calcium indicator. These islets were functionally imaged in vitro and in vivo. Wild-type mice were transplanted with islets expressing GCaMP6f in β-cells into the anterior eye chamber and placed on a high fat diet. Part of the cohort received a glucagon analogue (GCG-analogue) for 40 days and the control group were fed to achieve weight matching. Calcium imaging was performed regularly during the development of hyperglycaemia and in response to GCG-analogue treatment. Gcgrβ-cell−/− mice exhibited higher glucose levels following intraperitoneal glucose challenge (control 12.7 mmol/L ± 0.6 vs. Gcgrβ-cell−/− 15.4 mmol/L ± 0.0 at 15 min, p = 0.002); fasting glycaemia was not different to controls. In vitro, Gcgrβ-cell−/− islets showed profound loss of pan-islet [Ca2+]I waves in response to glucose which was only partially rescued in vivo. Diet induced obesity and hyperglycaemia also resulted in a loss of co-ordinated [Ca2+]I waves in transplanted islets. This was reversed with GCG-analogue treatment, independently of weight-loss (n = 8). These data provide novel evidence for the role of intra-islet GCGR signalling in sustaining synchronised [Ca2+]I waves and support a possible therapeutic role for glucagonergic agents to restore the insulin secretory capacity lost in T2D. •Beta-cell selective loss of the glucagon receptor (Gcgrβ-cell−/−) results in defective insulin secretion.•Gcgrβ-cell−/− islets display reduced ability for calcium waves to propagate and reduced beta-cell connectivity.•Long-term glucagon therapy reverts the loss of beta-cell calcium waves and dysglycaemia associated with diet induced obesity.
ISSN:2212-8778
2212-8778
DOI:10.1016/j.molmet.2024.101947