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Molecular reductions in glucokinase activity increase counter-regulatory responses to hypoglycemia in mice and humans with diabetes

OBJECTIVE: Appropriate glucose levels are essential for survival; thus, the detection and correction of low blood glucose is of paramount importance. Hypoglycemia prompts an integrated response involving reduction in insulin release and secretion of key counter-regulatory hormones glucagon and epine...

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Autores principales: Chakera, Ali J., Hurst, Paul S., Spyer, Gill, Ogunnowo-Bada, Emmanuel O., Marsh, William J., Riches, Christine H., Yueh, Chen-Yu, Markkula, S. Pauliina, Dalley, Jeffrey W., Cox, Roger D., Macdonald, Ian A., Amiel, Stephanie A., MacLeod, Kenneth M., Heisler, Lora K., Hattersley, Andrew T., Evans, Mark L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6197723/
https://www.ncbi.nlm.nih.gov/pubmed/30146176
http://dx.doi.org/10.1016/j.molmet.2018.08.001
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author Chakera, Ali J.
Hurst, Paul S.
Spyer, Gill
Ogunnowo-Bada, Emmanuel O.
Marsh, William J.
Riches, Christine H.
Yueh, Chen-Yu
Markkula, S. Pauliina
Dalley, Jeffrey W.
Cox, Roger D.
Macdonald, Ian A.
Amiel, Stephanie A.
MacLeod, Kenneth M.
Heisler, Lora K.
Hattersley, Andrew T.
Evans, Mark L.
author_facet Chakera, Ali J.
Hurst, Paul S.
Spyer, Gill
Ogunnowo-Bada, Emmanuel O.
Marsh, William J.
Riches, Christine H.
Yueh, Chen-Yu
Markkula, S. Pauliina
Dalley, Jeffrey W.
Cox, Roger D.
Macdonald, Ian A.
Amiel, Stephanie A.
MacLeod, Kenneth M.
Heisler, Lora K.
Hattersley, Andrew T.
Evans, Mark L.
author_sort Chakera, Ali J.
collection PubMed
description OBJECTIVE: Appropriate glucose levels are essential for survival; thus, the detection and correction of low blood glucose is of paramount importance. Hypoglycemia prompts an integrated response involving reduction in insulin release and secretion of key counter-regulatory hormones glucagon and epinephrine that together promote endogenous glucose production to restore normoglycemia. However, specifically how this response is orchestrated remains to be fully clarified. The low affinity hexokinase glucokinase is found in glucose-sensing cells involved in glucose homeostasis including pancreatic β-cells and in certain brain areas. Here, we aimed to examine the role of glucokinase in triggering counter-regulatory hormonal responses to hypoglycemia, hypothesizing that reduced glucokinase activity would lead to increased and/or earlier triggering of responses. METHODS: Hyperinsulinemic glucose clamps were performed to examine counter-regulatory responses to controlled hypoglycemic challenges created in humans with monogenic diabetes resulting from heterozygous glucokinase mutations (GCK-MODY). To examine the relative importance of glucokinase in different sensing areas, we then examined responses to clamped hypoglycemia in mice with molecularly defined disruption of whole body and/or brain glucokinase. RESULTS: GCK-MODY patients displayed increased and earlier glucagon responses during hypoglycemia compared with a group of glycemia-matched patients with type 2 diabetes. Consistent with this, glucagon responses to hypoglycemia were also increased in I366F mice with mutated glucokinase and in streptozotocin-treated β-cell ablated diabetic I366F mice. Glucagon responses were normal in conditional brain glucokinase-knockout mice, suggesting that glucagon release during hypoglycemia is controlled by glucokinase-mediated glucose sensing outside the brain but not in β-cells. For epinephrine, we found increased responses in GCK-MODY patients, in β-cell ablated diabetic I366F mice and in conditional (nestin lineage) brain glucokinase-knockout mice, supporting a role for brain glucokinase in triggering epinephrine release. CONCLUSIONS: Our data suggest that glucokinase in brain and other non β-cell peripheral hypoglycemia sensors is important in glucose homeostasis, allowing the body to detect and respond to a falling blood glucose.
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spelling pubmed-61977232018-10-24 Molecular reductions in glucokinase activity increase counter-regulatory responses to hypoglycemia in mice and humans with diabetes Chakera, Ali J. Hurst, Paul S. Spyer, Gill Ogunnowo-Bada, Emmanuel O. Marsh, William J. Riches, Christine H. Yueh, Chen-Yu Markkula, S. Pauliina Dalley, Jeffrey W. Cox, Roger D. Macdonald, Ian A. Amiel, Stephanie A. MacLeod, Kenneth M. Heisler, Lora K. Hattersley, Andrew T. Evans, Mark L. Mol Metab Original Article OBJECTIVE: Appropriate glucose levels are essential for survival; thus, the detection and correction of low blood glucose is of paramount importance. Hypoglycemia prompts an integrated response involving reduction in insulin release and secretion of key counter-regulatory hormones glucagon and epinephrine that together promote endogenous glucose production to restore normoglycemia. However, specifically how this response is orchestrated remains to be fully clarified. The low affinity hexokinase glucokinase is found in glucose-sensing cells involved in glucose homeostasis including pancreatic β-cells and in certain brain areas. Here, we aimed to examine the role of glucokinase in triggering counter-regulatory hormonal responses to hypoglycemia, hypothesizing that reduced glucokinase activity would lead to increased and/or earlier triggering of responses. METHODS: Hyperinsulinemic glucose clamps were performed to examine counter-regulatory responses to controlled hypoglycemic challenges created in humans with monogenic diabetes resulting from heterozygous glucokinase mutations (GCK-MODY). To examine the relative importance of glucokinase in different sensing areas, we then examined responses to clamped hypoglycemia in mice with molecularly defined disruption of whole body and/or brain glucokinase. RESULTS: GCK-MODY patients displayed increased and earlier glucagon responses during hypoglycemia compared with a group of glycemia-matched patients with type 2 diabetes. Consistent with this, glucagon responses to hypoglycemia were also increased in I366F mice with mutated glucokinase and in streptozotocin-treated β-cell ablated diabetic I366F mice. Glucagon responses were normal in conditional brain glucokinase-knockout mice, suggesting that glucagon release during hypoglycemia is controlled by glucokinase-mediated glucose sensing outside the brain but not in β-cells. For epinephrine, we found increased responses in GCK-MODY patients, in β-cell ablated diabetic I366F mice and in conditional (nestin lineage) brain glucokinase-knockout mice, supporting a role for brain glucokinase in triggering epinephrine release. CONCLUSIONS: Our data suggest that glucokinase in brain and other non β-cell peripheral hypoglycemia sensors is important in glucose homeostasis, allowing the body to detect and respond to a falling blood glucose. Elsevier 2018-08-13 /pmc/articles/PMC6197723/ /pubmed/30146176 http://dx.doi.org/10.1016/j.molmet.2018.08.001 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 Original Article
Chakera, Ali J.
Hurst, Paul S.
Spyer, Gill
Ogunnowo-Bada, Emmanuel O.
Marsh, William J.
Riches, Christine H.
Yueh, Chen-Yu
Markkula, S. Pauliina
Dalley, Jeffrey W.
Cox, Roger D.
Macdonald, Ian A.
Amiel, Stephanie A.
MacLeod, Kenneth M.
Heisler, Lora K.
Hattersley, Andrew T.
Evans, Mark L.
Molecular reductions in glucokinase activity increase counter-regulatory responses to hypoglycemia in mice and humans with diabetes
title Molecular reductions in glucokinase activity increase counter-regulatory responses to hypoglycemia in mice and humans with diabetes
title_full Molecular reductions in glucokinase activity increase counter-regulatory responses to hypoglycemia in mice and humans with diabetes
title_fullStr Molecular reductions in glucokinase activity increase counter-regulatory responses to hypoglycemia in mice and humans with diabetes
title_full_unstemmed Molecular reductions in glucokinase activity increase counter-regulatory responses to hypoglycemia in mice and humans with diabetes
title_short Molecular reductions in glucokinase activity increase counter-regulatory responses to hypoglycemia in mice and humans with diabetes
title_sort molecular reductions in glucokinase activity increase counter-regulatory responses to hypoglycemia in mice and humans with diabetes
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6197723/
https://www.ncbi.nlm.nih.gov/pubmed/30146176
http://dx.doi.org/10.1016/j.molmet.2018.08.001
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