Please use this identifier to cite or link to this item: https://hdl.handle.net/10356/179717
Title: Intra-islet glucagon signalling regulates beta-cell connectivity, first-phase insulin secretion and glucose homoeostasis
Authors: 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, Guy 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.
Keywords: Medicine, Health and Life Sciences
Issue Date: 2024
Source: 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., ...Salem, V. (2024). Intra-islet glucagon signalling regulates beta-cell connectivity, first-phase insulin secretion and glucose homoeostasis. Molecular Metabolism, 85, 101947-. https://dx.doi.org/10.1016/j.molmet.2024.101947
Journal: Molecular Metabolism 
Abstract: Objective: 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. Methods: 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. Results: 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). Conclusion: 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.
URI: https://hdl.handle.net/10356/179717
ISSN: 2212-8778
DOI: 10.1016/j.molmet.2024.101947
Schools: Lee Kong Chian School of Medicine (LKCMedicine) 
Rights: © 2024 The Authors. Published by Elsevier GmbH. This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
Fulltext Permission: open
Fulltext Availability: With Fulltext
Appears in Collections:LKCMedicine Journal Articles

Files in This Item:
File Description SizeFormat 
1-s2.0-S2212877824000784-main.pdf1.78 MBAdobe PDFThumbnail
View/Open

SCOPUSTM   
Citations 50

2
Updated on May 5, 2025

Page view(s)

66
Updated on May 6, 2025

Download(s)

10
Updated on May 6, 2025

Google ScholarTM

Check

Altmetric


Plumx

Items in DR-NTU are protected by copyright, with all rights reserved, unless otherwise indicated.