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Defining the Contribution of AMP-activated Protein Kinase (AMPK) and Protein Kinase C (PKC) in Regulation of Glucose Uptake by Metformin in Skeletal Muscle Cells

The importance of AMP-activated protein kinase (AMPK) and protein kinase C (PKC) as effectors of metformin (Met) action on glucose uptake (GU) in skeletal muscle cells was investigated. GU in L6 myotubes was stimulated 2-fold following 16 h of Met treatment and acutely enhanced by insulin in an addi...

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Autores principales: Turban, Sophie, Stretton, Clare, Drouin, Olivier, Green, Charlotte J., Watson, Maria L., Gray, Alexander, Ross, Fiona, Lantier, Louise, Viollet, Benoit, Hardie, D. Grahame, Marette, Andre, Hundal, Harinder S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3370192/
https://www.ncbi.nlm.nih.gov/pubmed/22511782
http://dx.doi.org/10.1074/jbc.M111.330746
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author Turban, Sophie
Stretton, Clare
Drouin, Olivier
Green, Charlotte J.
Watson, Maria L.
Gray, Alexander
Ross, Fiona
Lantier, Louise
Viollet, Benoit
Hardie, D. Grahame
Marette, Andre
Hundal, Harinder S.
author_facet Turban, Sophie
Stretton, Clare
Drouin, Olivier
Green, Charlotte J.
Watson, Maria L.
Gray, Alexander
Ross, Fiona
Lantier, Louise
Viollet, Benoit
Hardie, D. Grahame
Marette, Andre
Hundal, Harinder S.
author_sort Turban, Sophie
collection PubMed
description The importance of AMP-activated protein kinase (AMPK) and protein kinase C (PKC) as effectors of metformin (Met) action on glucose uptake (GU) in skeletal muscle cells was investigated. GU in L6 myotubes was stimulated 2-fold following 16 h of Met treatment and acutely enhanced by insulin in an additive fashion. Insulin-stimulated GU was sensitive to PI3K inhibition, whereas that induced by Met was not. Met and its related biguanide, phenformin, stimulated AMPK activation/phosphorylation to a level comparable with that induced by the AMPK activator, 5-amino-1-β-d-ribofuranosyl-imidazole-4-carboxamide (AICAR). However, the increase in GU elicited by AICAR was significantly lower than that induced by either biguanide. Expression of a constitutively active AMPK mimicked the effects of AICAR on GU, whereas a dominant interfering AMPK or shRNA silencing of AMPK prevented AICAR-stimulated GU and Met-induced AMPK signaling but only repressed biguanide-stimulated GU by ∼20%. Consistent with this, analysis of GU in muscle cells from α1(−/−)/α2(−/−) AMPK-deficient mice revealed a significant retention of Met-stimulated GU, being reduced by ∼35% compared with that of wild type cells. Atypical PKCs (aPKCs) have been implicated in Met-stimulated GU, and in line with this, Met and phenformin induced activation/phosphorylation of aPKC in L6 myotubes. However, although cellular depletion of aPKC (>90%) led to loss in biguanide-induced aPKC phosphorylation, it had no effect on Met-stimulated GU, whereas inhibitors targeting novel/conventional PKCs caused a significant reduction in biguanide-induced GU. Our findings indicate that although Met activates AMPK, a significant component of Met-stimulated GU in muscle cells is mediated via an AMPK-independent mechanism that involves novel/conventional PKCs.
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spelling pubmed-33701922012-06-15 Defining the Contribution of AMP-activated Protein Kinase (AMPK) and Protein Kinase C (PKC) in Regulation of Glucose Uptake by Metformin in Skeletal Muscle Cells Turban, Sophie Stretton, Clare Drouin, Olivier Green, Charlotte J. Watson, Maria L. Gray, Alexander Ross, Fiona Lantier, Louise Viollet, Benoit Hardie, D. Grahame Marette, Andre Hundal, Harinder S. J Biol Chem Signal Transduction The importance of AMP-activated protein kinase (AMPK) and protein kinase C (PKC) as effectors of metformin (Met) action on glucose uptake (GU) in skeletal muscle cells was investigated. GU in L6 myotubes was stimulated 2-fold following 16 h of Met treatment and acutely enhanced by insulin in an additive fashion. Insulin-stimulated GU was sensitive to PI3K inhibition, whereas that induced by Met was not. Met and its related biguanide, phenformin, stimulated AMPK activation/phosphorylation to a level comparable with that induced by the AMPK activator, 5-amino-1-β-d-ribofuranosyl-imidazole-4-carboxamide (AICAR). However, the increase in GU elicited by AICAR was significantly lower than that induced by either biguanide. Expression of a constitutively active AMPK mimicked the effects of AICAR on GU, whereas a dominant interfering AMPK or shRNA silencing of AMPK prevented AICAR-stimulated GU and Met-induced AMPK signaling but only repressed biguanide-stimulated GU by ∼20%. Consistent with this, analysis of GU in muscle cells from α1(−/−)/α2(−/−) AMPK-deficient mice revealed a significant retention of Met-stimulated GU, being reduced by ∼35% compared with that of wild type cells. Atypical PKCs (aPKCs) have been implicated in Met-stimulated GU, and in line with this, Met and phenformin induced activation/phosphorylation of aPKC in L6 myotubes. However, although cellular depletion of aPKC (>90%) led to loss in biguanide-induced aPKC phosphorylation, it had no effect on Met-stimulated GU, whereas inhibitors targeting novel/conventional PKCs caused a significant reduction in biguanide-induced GU. Our findings indicate that although Met activates AMPK, a significant component of Met-stimulated GU in muscle cells is mediated via an AMPK-independent mechanism that involves novel/conventional PKCs. American Society for Biochemistry and Molecular Biology 2012-06-08 2012-04-17 /pmc/articles/PMC3370192/ /pubmed/22511782 http://dx.doi.org/10.1074/jbc.M111.330746 Text en © 2012 by The American Society for Biochemistry and Molecular Biology, Inc. Author's Choice—Final version full access. Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0/) applies to Author Choice Articles
spellingShingle Signal Transduction
Turban, Sophie
Stretton, Clare
Drouin, Olivier
Green, Charlotte J.
Watson, Maria L.
Gray, Alexander
Ross, Fiona
Lantier, Louise
Viollet, Benoit
Hardie, D. Grahame
Marette, Andre
Hundal, Harinder S.
Defining the Contribution of AMP-activated Protein Kinase (AMPK) and Protein Kinase C (PKC) in Regulation of Glucose Uptake by Metformin in Skeletal Muscle Cells
title Defining the Contribution of AMP-activated Protein Kinase (AMPK) and Protein Kinase C (PKC) in Regulation of Glucose Uptake by Metformin in Skeletal Muscle Cells
title_full Defining the Contribution of AMP-activated Protein Kinase (AMPK) and Protein Kinase C (PKC) in Regulation of Glucose Uptake by Metformin in Skeletal Muscle Cells
title_fullStr Defining the Contribution of AMP-activated Protein Kinase (AMPK) and Protein Kinase C (PKC) in Regulation of Glucose Uptake by Metformin in Skeletal Muscle Cells
title_full_unstemmed Defining the Contribution of AMP-activated Protein Kinase (AMPK) and Protein Kinase C (PKC) in Regulation of Glucose Uptake by Metformin in Skeletal Muscle Cells
title_short Defining the Contribution of AMP-activated Protein Kinase (AMPK) and Protein Kinase C (PKC) in Regulation of Glucose Uptake by Metformin in Skeletal Muscle Cells
title_sort defining the contribution of amp-activated protein kinase (ampk) and protein kinase c (pkc) in regulation of glucose uptake by metformin in skeletal muscle cells
topic Signal Transduction
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3370192/
https://www.ncbi.nlm.nih.gov/pubmed/22511782
http://dx.doi.org/10.1074/jbc.M111.330746
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