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The Mammalian INDY Homolog Is Induced by CREB in a Rat Model of Type 2 Diabetes

Reduced expression of the INDY (I'm not dead yet) tricarboxylate carrier increased the life span in different species by mechanisms akin to caloric restriction. Mammalian INDY homolog (mIndy, SLC13A5) gene expression seems to be regulated by hormonal and/or nutritional factors. The underlying m...

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Autores principales: Neuschäfer-Rube, Frank, Lieske, Stefanie, Kuna, Manuela, Henkel, Janin, Perry, Rachel J., Erion, Derek M., Pesta, Dominik, Willmes, Diana M., Brachs, Sebastian, von Loeffelholz, Christian, Tolkachov, Alexander, Schupp, Michael, Pathe-Neuschäfer-Rube, Andrea, Pfeiffer, Andreas F.H., Shulman, Gerald I., Püschel, Gerhard P., Birkenfeld, Andreas L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Diabetes Association 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3968437/
https://www.ncbi.nlm.nih.gov/pubmed/24222346
http://dx.doi.org/10.2337/db13-0749
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author Neuschäfer-Rube, Frank
Lieske, Stefanie
Kuna, Manuela
Henkel, Janin
Perry, Rachel J.
Erion, Derek M.
Pesta, Dominik
Willmes, Diana M.
Brachs, Sebastian
von Loeffelholz, Christian
Tolkachov, Alexander
Schupp, Michael
Pathe-Neuschäfer-Rube, Andrea
Pfeiffer, Andreas F.H.
Shulman, Gerald I.
Püschel, Gerhard P.
Birkenfeld, Andreas L.
author_facet Neuschäfer-Rube, Frank
Lieske, Stefanie
Kuna, Manuela
Henkel, Janin
Perry, Rachel J.
Erion, Derek M.
Pesta, Dominik
Willmes, Diana M.
Brachs, Sebastian
von Loeffelholz, Christian
Tolkachov, Alexander
Schupp, Michael
Pathe-Neuschäfer-Rube, Andrea
Pfeiffer, Andreas F.H.
Shulman, Gerald I.
Püschel, Gerhard P.
Birkenfeld, Andreas L.
author_sort Neuschäfer-Rube, Frank
collection PubMed
description Reduced expression of the INDY (I'm not dead yet) tricarboxylate carrier increased the life span in different species by mechanisms akin to caloric restriction. Mammalian INDY homolog (mIndy, SLC13A5) gene expression seems to be regulated by hormonal and/or nutritional factors. The underlying mechanisms are still unknown. The current study revealed that mIndy expression and [(14)C]-citrate uptake was induced by physiological concentrations of glucagon via a cAMP-dependent and cAMP-responsive element–binding protein (CREB)–dependent mechanism in primary rat hepatocytes. The promoter sequence of mIndy located upstream of the most frequent transcription start site was determined by 5′-rapid amplification of cDNA ends. In silico analysis identified a CREB-binding site within this promoter fragment of mIndy. Functional relevance for the CREB-binding site was demonstrated with reporter gene constructs that were induced by CREB activation when under the control of a fragment of a wild-type promoter, whereas promoter activity was lost after site-directed mutagenesis of the CREB-binding site. Moreover, CREB binding to this promoter element was confirmed by chromatin immunoprecipitation in rat liver. In vivo studies revealed that mIndy was induced in livers of fasted as well as in high-fat-diet–streptozotocin diabetic rats, in which CREB is constitutively activated. mIndy induction was completely prevented when CREB was depleted in these rats by antisense oligonucleotides. Together, these data suggest that mIndy is a CREB-dependent glucagon target gene that is induced in fasting and in type 2 diabetes. Increased mIndy expression might contribute to the metabolic consequences of diabetes in the liver.
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spelling pubmed-39684372015-03-01 The Mammalian INDY Homolog Is Induced by CREB in a Rat Model of Type 2 Diabetes Neuschäfer-Rube, Frank Lieske, Stefanie Kuna, Manuela Henkel, Janin Perry, Rachel J. Erion, Derek M. Pesta, Dominik Willmes, Diana M. Brachs, Sebastian von Loeffelholz, Christian Tolkachov, Alexander Schupp, Michael Pathe-Neuschäfer-Rube, Andrea Pfeiffer, Andreas F.H. Shulman, Gerald I. Püschel, Gerhard P. Birkenfeld, Andreas L. Diabetes Pathophysiology Reduced expression of the INDY (I'm not dead yet) tricarboxylate carrier increased the life span in different species by mechanisms akin to caloric restriction. Mammalian INDY homolog (mIndy, SLC13A5) gene expression seems to be regulated by hormonal and/or nutritional factors. The underlying mechanisms are still unknown. The current study revealed that mIndy expression and [(14)C]-citrate uptake was induced by physiological concentrations of glucagon via a cAMP-dependent and cAMP-responsive element–binding protein (CREB)–dependent mechanism in primary rat hepatocytes. The promoter sequence of mIndy located upstream of the most frequent transcription start site was determined by 5′-rapid amplification of cDNA ends. In silico analysis identified a CREB-binding site within this promoter fragment of mIndy. Functional relevance for the CREB-binding site was demonstrated with reporter gene constructs that were induced by CREB activation when under the control of a fragment of a wild-type promoter, whereas promoter activity was lost after site-directed mutagenesis of the CREB-binding site. Moreover, CREB binding to this promoter element was confirmed by chromatin immunoprecipitation in rat liver. In vivo studies revealed that mIndy was induced in livers of fasted as well as in high-fat-diet–streptozotocin diabetic rats, in which CREB is constitutively activated. mIndy induction was completely prevented when CREB was depleted in these rats by antisense oligonucleotides. Together, these data suggest that mIndy is a CREB-dependent glucagon target gene that is induced in fasting and in type 2 diabetes. Increased mIndy expression might contribute to the metabolic consequences of diabetes in the liver. American Diabetes Association 2014-03 2014-02-13 /pmc/articles/PMC3968437/ /pubmed/24222346 http://dx.doi.org/10.2337/db13-0749 Text en © 2014 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 Pathophysiology
Neuschäfer-Rube, Frank
Lieske, Stefanie
Kuna, Manuela
Henkel, Janin
Perry, Rachel J.
Erion, Derek M.
Pesta, Dominik
Willmes, Diana M.
Brachs, Sebastian
von Loeffelholz, Christian
Tolkachov, Alexander
Schupp, Michael
Pathe-Neuschäfer-Rube, Andrea
Pfeiffer, Andreas F.H.
Shulman, Gerald I.
Püschel, Gerhard P.
Birkenfeld, Andreas L.
The Mammalian INDY Homolog Is Induced by CREB in a Rat Model of Type 2 Diabetes
title The Mammalian INDY Homolog Is Induced by CREB in a Rat Model of Type 2 Diabetes
title_full The Mammalian INDY Homolog Is Induced by CREB in a Rat Model of Type 2 Diabetes
title_fullStr The Mammalian INDY Homolog Is Induced by CREB in a Rat Model of Type 2 Diabetes
title_full_unstemmed The Mammalian INDY Homolog Is Induced by CREB in a Rat Model of Type 2 Diabetes
title_short The Mammalian INDY Homolog Is Induced by CREB in a Rat Model of Type 2 Diabetes
title_sort mammalian indy homolog is induced by creb in a rat model of type 2 diabetes
topic Pathophysiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3968437/
https://www.ncbi.nlm.nih.gov/pubmed/24222346
http://dx.doi.org/10.2337/db13-0749
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