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The Lysine Demethylase KDM5B Regulates Islet Function and Glucose Homeostasis
AIMS: Posttranslational modifications of histones and transcription factors regulate gene expression and are implicated in beta-cell failure and diabetes. We have recently shown that preserving H3K27 and H3K4 methylation using the lysine demethylase inhibitor GSK-J4 reduces cytokine-induced destruct...
Autores principales: | , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Hindawi
2019
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6701283/ https://www.ncbi.nlm.nih.gov/pubmed/31467927 http://dx.doi.org/10.1155/2019/5451038 |
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author | Backe, Marie Balslev Jin, Chunyu Andreone, Luz Sankar, Aditya Agger, Karl Helin, Kristian Madsen, Andreas Nygaard Poulsen, Steen Seier Bysani, Madhusudhan Bacos, Karl Ling, Charlotte Perone, Marcelo Javier Holst, Birgitte Mandrup-Poulsen, Thomas |
author_facet | Backe, Marie Balslev Jin, Chunyu Andreone, Luz Sankar, Aditya Agger, Karl Helin, Kristian Madsen, Andreas Nygaard Poulsen, Steen Seier Bysani, Madhusudhan Bacos, Karl Ling, Charlotte Perone, Marcelo Javier Holst, Birgitte Mandrup-Poulsen, Thomas |
author_sort | Backe, Marie Balslev |
collection | PubMed |
description | AIMS: Posttranslational modifications of histones and transcription factors regulate gene expression and are implicated in beta-cell failure and diabetes. We have recently shown that preserving H3K27 and H3K4 methylation using the lysine demethylase inhibitor GSK-J4 reduces cytokine-induced destruction of beta-cells and improves beta-cell function. Here, we investigate the therapeutic potential of GSK-J4 to prevent diabetes development and examine the importance of H3K4 methylation for islet function. MATERIALS AND METHODS: We used two mouse models of diabetes to investigate the therapeutic potential of GSK-J4. To clarify the importance of H3K4 methylation, we characterized a mouse strain with knockout (KO) of the H3K4 demethylase KDM5B. RESULTS: GSK-J4 administration failed to prevent the development of experimental diabetes induced by multiple low-dose streptozotocin or adoptive transfer of splenocytes from acutely diabetic NOD to NODscid mice. KDM5B-KO mice were growth retarded with altered body composition, had low IGF-1 levels, and exhibited reduced insulin secretion. Interestingly, despite secreting less insulin, KDM5B-KO mice were able to maintain normoglycemia following oral glucose tolerance test, likely via improved insulin sensitivity, as suggested by insulin tolerance testing and phosphorylation of proteins belonging to the insulin signaling pathway. When challenged with high-fat diet, KDM5B-deficient mice displayed similar weight gain and insulin sensitivity as wild-type mice. CONCLUSION: Our results show a novel role of KDM5B in metabolism, as KDM5B-KO mice display growth retardation and improved insulin sensitivity. |
format | Online Article Text |
id | pubmed-6701283 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2019 |
publisher | Hindawi |
record_format | MEDLINE/PubMed |
spelling | pubmed-67012832019-08-29 The Lysine Demethylase KDM5B Regulates Islet Function and Glucose Homeostasis Backe, Marie Balslev Jin, Chunyu Andreone, Luz Sankar, Aditya Agger, Karl Helin, Kristian Madsen, Andreas Nygaard Poulsen, Steen Seier Bysani, Madhusudhan Bacos, Karl Ling, Charlotte Perone, Marcelo Javier Holst, Birgitte Mandrup-Poulsen, Thomas J Diabetes Res Research Article AIMS: Posttranslational modifications of histones and transcription factors regulate gene expression and are implicated in beta-cell failure and diabetes. We have recently shown that preserving H3K27 and H3K4 methylation using the lysine demethylase inhibitor GSK-J4 reduces cytokine-induced destruction of beta-cells and improves beta-cell function. Here, we investigate the therapeutic potential of GSK-J4 to prevent diabetes development and examine the importance of H3K4 methylation for islet function. MATERIALS AND METHODS: We used two mouse models of diabetes to investigate the therapeutic potential of GSK-J4. To clarify the importance of H3K4 methylation, we characterized a mouse strain with knockout (KO) of the H3K4 demethylase KDM5B. RESULTS: GSK-J4 administration failed to prevent the development of experimental diabetes induced by multiple low-dose streptozotocin or adoptive transfer of splenocytes from acutely diabetic NOD to NODscid mice. KDM5B-KO mice were growth retarded with altered body composition, had low IGF-1 levels, and exhibited reduced insulin secretion. Interestingly, despite secreting less insulin, KDM5B-KO mice were able to maintain normoglycemia following oral glucose tolerance test, likely via improved insulin sensitivity, as suggested by insulin tolerance testing and phosphorylation of proteins belonging to the insulin signaling pathway. When challenged with high-fat diet, KDM5B-deficient mice displayed similar weight gain and insulin sensitivity as wild-type mice. CONCLUSION: Our results show a novel role of KDM5B in metabolism, as KDM5B-KO mice display growth retardation and improved insulin sensitivity. Hindawi 2019-07-28 /pmc/articles/PMC6701283/ /pubmed/31467927 http://dx.doi.org/10.1155/2019/5451038 Text en Copyright © 2019 Marie Balslev Backe et al. http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. |
spellingShingle | Research Article Backe, Marie Balslev Jin, Chunyu Andreone, Luz Sankar, Aditya Agger, Karl Helin, Kristian Madsen, Andreas Nygaard Poulsen, Steen Seier Bysani, Madhusudhan Bacos, Karl Ling, Charlotte Perone, Marcelo Javier Holst, Birgitte Mandrup-Poulsen, Thomas The Lysine Demethylase KDM5B Regulates Islet Function and Glucose Homeostasis |
title | The Lysine Demethylase KDM5B Regulates Islet Function and Glucose Homeostasis |
title_full | The Lysine Demethylase KDM5B Regulates Islet Function and Glucose Homeostasis |
title_fullStr | The Lysine Demethylase KDM5B Regulates Islet Function and Glucose Homeostasis |
title_full_unstemmed | The Lysine Demethylase KDM5B Regulates Islet Function and Glucose Homeostasis |
title_short | The Lysine Demethylase KDM5B Regulates Islet Function and Glucose Homeostasis |
title_sort | lysine demethylase kdm5b regulates islet function and glucose homeostasis |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6701283/ https://www.ncbi.nlm.nih.gov/pubmed/31467927 http://dx.doi.org/10.1155/2019/5451038 |
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