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Overexpression of Kinase-Negative Protein Kinase Cδ in Pancreatic β-Cells Protects Mice From Diet-Induced Glucose Intolerance and β-Cell Dysfunction

OBJECTIVE: In vitro models suggest that free fatty acid–induced apoptotic β-cell death is mediated through protein kinase C (PKC)δ. To examine the role of PKCδ signaling in vivo, transgenic mice overexpressing a kinase-negative PKCδ (PKCδKN) selectively in β-cells were generated and analyzed for glu...

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Autores principales: Hennige, Anita M., Ranta, Felicia, Heinzelmann, Isabel, Düfer, Martina, Michael, Diana, Braumüller, Heidi, Lutz, Stefan Z., Lammers, Reiner, Drews, Gisela, Bosch, Fatima, Häring, Hans-Ulrich, Ullrich, Susanne
Formato: Texto
Lenguaje:English
Publicado: American Diabetes Association 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2797912/
https://www.ncbi.nlm.nih.gov/pubmed/19826167
http://dx.doi.org/10.2337/db09-0512
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author Hennige, Anita M.
Ranta, Felicia
Heinzelmann, Isabel
Düfer, Martina
Michael, Diana
Braumüller, Heidi
Lutz, Stefan Z.
Lammers, Reiner
Drews, Gisela
Bosch, Fatima
Häring, Hans-Ulrich
Ullrich, Susanne
author_facet Hennige, Anita M.
Ranta, Felicia
Heinzelmann, Isabel
Düfer, Martina
Michael, Diana
Braumüller, Heidi
Lutz, Stefan Z.
Lammers, Reiner
Drews, Gisela
Bosch, Fatima
Häring, Hans-Ulrich
Ullrich, Susanne
author_sort Hennige, Anita M.
collection PubMed
description OBJECTIVE: In vitro models suggest that free fatty acid–induced apoptotic β-cell death is mediated through protein kinase C (PKC)δ. To examine the role of PKCδ signaling in vivo, transgenic mice overexpressing a kinase-negative PKCδ (PKCδKN) selectively in β-cells were generated and analyzed for glucose homeostasis and β-cell survival. RESEARCH DESIGN AND METHODS: Mice were fed a standard or high-fat diet (HFD). Blood glucose and insulin levels were determined after glucose loads. Islet size, cleaved caspase-3, and PKCδ expression were estimated by immunohistochemistry. In isolated islet cells apoptosis was assessed with TUNEL/TO-PRO3 DNA staining and the mitochondrial potential by rhodamine-123 staining. Changes in phosphorylation and subcellular distribution of forkhead box class O1 (FOXO1) were analyzed by Western blotting and immunohistochemistry. RESULTS: PKCδKN mice were protected from HFD-induced glucose intolerance. This was accompanied by increased insulin levels in vivo, by an increased islet size, and by a reduced staining of β-cells for cleaved caspase-3 compared with wild-type littermates. In accordance, long-term treatment with palmitate increased apoptotic cell death of isolated islet cells from wild-type but not from PKCδKN mice. PKCδKN overexpression protected islet cells from palmitate-induced mitochondrial dysfunction and inhibited nuclear accumulation of FOXO1 in mouse islet and INS-1E cells. The inhibition of nuclear accumulation of FOXO1 by PKCδKN was accompanied by an increased phosphorylation of FOXO1 at Ser256 and a significant reduction of FOXO1 protein. CONCLUSIONS: Overexpression of PKCδKN in β-cells protects from HFD-induced β-cell failure in vivo by a mechanism that involves inhibition of fatty acid–mediated apoptosis, inhibition of mitochondrial dysfunction, and inhibition of FOXO1 activation.
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spelling pubmed-27979122011-01-01 Overexpression of Kinase-Negative Protein Kinase Cδ in Pancreatic β-Cells Protects Mice From Diet-Induced Glucose Intolerance and β-Cell Dysfunction Hennige, Anita M. Ranta, Felicia Heinzelmann, Isabel Düfer, Martina Michael, Diana Braumüller, Heidi Lutz, Stefan Z. Lammers, Reiner Drews, Gisela Bosch, Fatima Häring, Hans-Ulrich Ullrich, Susanne Diabetes Original Article OBJECTIVE: In vitro models suggest that free fatty acid–induced apoptotic β-cell death is mediated through protein kinase C (PKC)δ. To examine the role of PKCδ signaling in vivo, transgenic mice overexpressing a kinase-negative PKCδ (PKCδKN) selectively in β-cells were generated and analyzed for glucose homeostasis and β-cell survival. RESEARCH DESIGN AND METHODS: Mice were fed a standard or high-fat diet (HFD). Blood glucose and insulin levels were determined after glucose loads. Islet size, cleaved caspase-3, and PKCδ expression were estimated by immunohistochemistry. In isolated islet cells apoptosis was assessed with TUNEL/TO-PRO3 DNA staining and the mitochondrial potential by rhodamine-123 staining. Changes in phosphorylation and subcellular distribution of forkhead box class O1 (FOXO1) were analyzed by Western blotting and immunohistochemistry. RESULTS: PKCδKN mice were protected from HFD-induced glucose intolerance. This was accompanied by increased insulin levels in vivo, by an increased islet size, and by a reduced staining of β-cells for cleaved caspase-3 compared with wild-type littermates. In accordance, long-term treatment with palmitate increased apoptotic cell death of isolated islet cells from wild-type but not from PKCδKN mice. PKCδKN overexpression protected islet cells from palmitate-induced mitochondrial dysfunction and inhibited nuclear accumulation of FOXO1 in mouse islet and INS-1E cells. The inhibition of nuclear accumulation of FOXO1 by PKCδKN was accompanied by an increased phosphorylation of FOXO1 at Ser256 and a significant reduction of FOXO1 protein. CONCLUSIONS: Overexpression of PKCδKN in β-cells protects from HFD-induced β-cell failure in vivo by a mechanism that involves inhibition of fatty acid–mediated apoptosis, inhibition of mitochondrial dysfunction, and inhibition of FOXO1 activation. American Diabetes Association 2010-01 2009-10-13 /pmc/articles/PMC2797912/ /pubmed/19826167 http://dx.doi.org/10.2337/db09-0512 Text en © 2010 by the American Diabetes Association. Readers may use this article as long as the work is properly cited, the use is educational and not for profit, and the work is not altered. See http://creativecommons.org/licenses/by-nc-nd/3.0/ for details.
spellingShingle Original Article
Hennige, Anita M.
Ranta, Felicia
Heinzelmann, Isabel
Düfer, Martina
Michael, Diana
Braumüller, Heidi
Lutz, Stefan Z.
Lammers, Reiner
Drews, Gisela
Bosch, Fatima
Häring, Hans-Ulrich
Ullrich, Susanne
Overexpression of Kinase-Negative Protein Kinase Cδ in Pancreatic β-Cells Protects Mice From Diet-Induced Glucose Intolerance and β-Cell Dysfunction
title Overexpression of Kinase-Negative Protein Kinase Cδ in Pancreatic β-Cells Protects Mice From Diet-Induced Glucose Intolerance and β-Cell Dysfunction
title_full Overexpression of Kinase-Negative Protein Kinase Cδ in Pancreatic β-Cells Protects Mice From Diet-Induced Glucose Intolerance and β-Cell Dysfunction
title_fullStr Overexpression of Kinase-Negative Protein Kinase Cδ in Pancreatic β-Cells Protects Mice From Diet-Induced Glucose Intolerance and β-Cell Dysfunction
title_full_unstemmed Overexpression of Kinase-Negative Protein Kinase Cδ in Pancreatic β-Cells Protects Mice From Diet-Induced Glucose Intolerance and β-Cell Dysfunction
title_short Overexpression of Kinase-Negative Protein Kinase Cδ in Pancreatic β-Cells Protects Mice From Diet-Induced Glucose Intolerance and β-Cell Dysfunction
title_sort overexpression of kinase-negative protein kinase cδ in pancreatic β-cells protects mice from diet-induced glucose intolerance and β-cell dysfunction
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2797912/
https://www.ncbi.nlm.nih.gov/pubmed/19826167
http://dx.doi.org/10.2337/db09-0512
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