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Dysregulation of Glucagon Secretion by Hyperglycemia-Induced Sodium-Dependent Reduction of ATP Production

Diabetes is a bihormonal disorder resulting from combined insulin and glucagon secretion defects. Mice lacking fumarase (Fh1) in their β cells (Fh1βKO mice) develop progressive hyperglycemia and dysregulated glucagon secretion similar to that seen in diabetic patients (too much at high glucose and t...

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Autores principales: Knudsen, Jakob G., Hamilton, Alexander, Ramracheya, Reshma, Tarasov, Andrei I., Brereton, Melissa, Haythorne, Elizabeth, Chibalina, Margarita V., Spégel, Peter, Mulder, Hindrik, Zhang, Quan, Ashcroft, Frances M., Adam, Julie, Rorsman, Patrik
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6370947/
https://www.ncbi.nlm.nih.gov/pubmed/30415925
http://dx.doi.org/10.1016/j.cmet.2018.10.003
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author Knudsen, Jakob G.
Hamilton, Alexander
Ramracheya, Reshma
Tarasov, Andrei I.
Brereton, Melissa
Haythorne, Elizabeth
Chibalina, Margarita V.
Spégel, Peter
Mulder, Hindrik
Zhang, Quan
Ashcroft, Frances M.
Adam, Julie
Rorsman, Patrik
author_facet Knudsen, Jakob G.
Hamilton, Alexander
Ramracheya, Reshma
Tarasov, Andrei I.
Brereton, Melissa
Haythorne, Elizabeth
Chibalina, Margarita V.
Spégel, Peter
Mulder, Hindrik
Zhang, Quan
Ashcroft, Frances M.
Adam, Julie
Rorsman, Patrik
author_sort Knudsen, Jakob G.
collection PubMed
description Diabetes is a bihormonal disorder resulting from combined insulin and glucagon secretion defects. Mice lacking fumarase (Fh1) in their β cells (Fh1βKO mice) develop progressive hyperglycemia and dysregulated glucagon secretion similar to that seen in diabetic patients (too much at high glucose and too little at low glucose). The glucagon secretion defects are corrected by low concentrations of tolbutamide and prevented by the sodium-glucose transport (SGLT) inhibitor phlorizin. These data link hyperglycemia, intracellular Na(+) accumulation, and acidification to impaired mitochondrial metabolism, reduced ATP production, and dysregulated glucagon secretion. Protein succination, reflecting reduced activity of fumarase, is observed in α cells from hyperglycemic Fh1βKO and β-V59M gain-of-function K(ATP) channel mice, diabetic Goto-Kakizaki rats, and patients with type 2 diabetes. Succination is also observed in renal tubular cells and cardiomyocytes from hyperglycemic Fh1βKO mice, suggesting that the model can be extended to other SGLT-expressing cells and may explain part of the spectrum of diabetic complications.
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spelling pubmed-63709472019-02-21 Dysregulation of Glucagon Secretion by Hyperglycemia-Induced Sodium-Dependent Reduction of ATP Production Knudsen, Jakob G. Hamilton, Alexander Ramracheya, Reshma Tarasov, Andrei I. Brereton, Melissa Haythorne, Elizabeth Chibalina, Margarita V. Spégel, Peter Mulder, Hindrik Zhang, Quan Ashcroft, Frances M. Adam, Julie Rorsman, Patrik Cell Metab Article Diabetes is a bihormonal disorder resulting from combined insulin and glucagon secretion defects. Mice lacking fumarase (Fh1) in their β cells (Fh1βKO mice) develop progressive hyperglycemia and dysregulated glucagon secretion similar to that seen in diabetic patients (too much at high glucose and too little at low glucose). The glucagon secretion defects are corrected by low concentrations of tolbutamide and prevented by the sodium-glucose transport (SGLT) inhibitor phlorizin. These data link hyperglycemia, intracellular Na(+) accumulation, and acidification to impaired mitochondrial metabolism, reduced ATP production, and dysregulated glucagon secretion. Protein succination, reflecting reduced activity of fumarase, is observed in α cells from hyperglycemic Fh1βKO and β-V59M gain-of-function K(ATP) channel mice, diabetic Goto-Kakizaki rats, and patients with type 2 diabetes. Succination is also observed in renal tubular cells and cardiomyocytes from hyperglycemic Fh1βKO mice, suggesting that the model can be extended to other SGLT-expressing cells and may explain part of the spectrum of diabetic complications. Cell Press 2019-02-05 /pmc/articles/PMC6370947/ /pubmed/30415925 http://dx.doi.org/10.1016/j.cmet.2018.10.003 Text en © 2018 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Knudsen, Jakob G.
Hamilton, Alexander
Ramracheya, Reshma
Tarasov, Andrei I.
Brereton, Melissa
Haythorne, Elizabeth
Chibalina, Margarita V.
Spégel, Peter
Mulder, Hindrik
Zhang, Quan
Ashcroft, Frances M.
Adam, Julie
Rorsman, Patrik
Dysregulation of Glucagon Secretion by Hyperglycemia-Induced Sodium-Dependent Reduction of ATP Production
title Dysregulation of Glucagon Secretion by Hyperglycemia-Induced Sodium-Dependent Reduction of ATP Production
title_full Dysregulation of Glucagon Secretion by Hyperglycemia-Induced Sodium-Dependent Reduction of ATP Production
title_fullStr Dysregulation of Glucagon Secretion by Hyperglycemia-Induced Sodium-Dependent Reduction of ATP Production
title_full_unstemmed Dysregulation of Glucagon Secretion by Hyperglycemia-Induced Sodium-Dependent Reduction of ATP Production
title_short Dysregulation of Glucagon Secretion by Hyperglycemia-Induced Sodium-Dependent Reduction of ATP Production
title_sort dysregulation of glucagon secretion by hyperglycemia-induced sodium-dependent reduction of atp production
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6370947/
https://www.ncbi.nlm.nih.gov/pubmed/30415925
http://dx.doi.org/10.1016/j.cmet.2018.10.003
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