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Nutrient regulation of the islet epigenome controls adaptive insulin secretion

Adaptation of the islet β cell insulin-secretory response to changing insulin demand is critical for blood glucose homeostasis, yet the mechanisms underlying this adaptation are unknown. Here, we have shown that nutrient-stimulated histone acetylation plays a key role in adapting insulin secretion t...

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Autores principales: Wortham, Matthew, Liu, Fenfen, Harrington, Austin R., Fleischman, Johanna Y., Wallace, Martina, Mulas, Francesca, Mallick, Medhavi, Vinckier, Nicholas K., Cross, Benjamin R., Chiou, Joshua, Patel, Nisha A., Sui, Yinghui, McGrail, Carolyn, Jun, Yesl, Wang, Gaowei, Jhala, Ulupi S., Schüle, Roland, Shirihai, Orian S., Huising, Mark O., Gaulton, Kyle J., Metallo, Christian M., Sander, Maike
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Clinical Investigation 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10104905/
https://www.ncbi.nlm.nih.gov/pubmed/36821378
http://dx.doi.org/10.1172/JCI165208
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author Wortham, Matthew
Liu, Fenfen
Harrington, Austin R.
Fleischman, Johanna Y.
Wallace, Martina
Mulas, Francesca
Mallick, Medhavi
Vinckier, Nicholas K.
Cross, Benjamin R.
Chiou, Joshua
Patel, Nisha A.
Sui, Yinghui
McGrail, Carolyn
Jun, Yesl
Wang, Gaowei
Jhala, Ulupi S.
Schüle, Roland
Shirihai, Orian S.
Huising, Mark O.
Gaulton, Kyle J.
Metallo, Christian M.
Sander, Maike
author_facet Wortham, Matthew
Liu, Fenfen
Harrington, Austin R.
Fleischman, Johanna Y.
Wallace, Martina
Mulas, Francesca
Mallick, Medhavi
Vinckier, Nicholas K.
Cross, Benjamin R.
Chiou, Joshua
Patel, Nisha A.
Sui, Yinghui
McGrail, Carolyn
Jun, Yesl
Wang, Gaowei
Jhala, Ulupi S.
Schüle, Roland
Shirihai, Orian S.
Huising, Mark O.
Gaulton, Kyle J.
Metallo, Christian M.
Sander, Maike
author_sort Wortham, Matthew
collection PubMed
description Adaptation of the islet β cell insulin-secretory response to changing insulin demand is critical for blood glucose homeostasis, yet the mechanisms underlying this adaptation are unknown. Here, we have shown that nutrient-stimulated histone acetylation plays a key role in adapting insulin secretion through regulation of genes involved in β cell nutrient sensing and metabolism. Nutrient regulation of the epigenome occurred at sites occupied by the chromatin-modifying enzyme lysine-specific demethylase 1 (Lsd1) in islets. β Cell–specific deletion of Lsd1 led to insulin hypersecretion, aberrant expression of nutrient-response genes, and histone hyperacetylation. Islets from mice adapted to chronically increased insulin demand exhibited shared epigenetic and transcriptional changes. Moreover, we found that genetic variants associated with type 2 diabetes were enriched at LSD1-bound sites in human islets, suggesting that interpretation of nutrient signals is genetically determined and clinically relevant. Overall, these studies revealed that adaptive insulin secretion involves Lsd1-mediated coupling of nutrient state to regulation of the islet epigenome.
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spelling pubmed-101049052023-04-17 Nutrient regulation of the islet epigenome controls adaptive insulin secretion Wortham, Matthew Liu, Fenfen Harrington, Austin R. Fleischman, Johanna Y. Wallace, Martina Mulas, Francesca Mallick, Medhavi Vinckier, Nicholas K. Cross, Benjamin R. Chiou, Joshua Patel, Nisha A. Sui, Yinghui McGrail, Carolyn Jun, Yesl Wang, Gaowei Jhala, Ulupi S. Schüle, Roland Shirihai, Orian S. Huising, Mark O. Gaulton, Kyle J. Metallo, Christian M. Sander, Maike J Clin Invest Research Article Adaptation of the islet β cell insulin-secretory response to changing insulin demand is critical for blood glucose homeostasis, yet the mechanisms underlying this adaptation are unknown. Here, we have shown that nutrient-stimulated histone acetylation plays a key role in adapting insulin secretion through regulation of genes involved in β cell nutrient sensing and metabolism. Nutrient regulation of the epigenome occurred at sites occupied by the chromatin-modifying enzyme lysine-specific demethylase 1 (Lsd1) in islets. β Cell–specific deletion of Lsd1 led to insulin hypersecretion, aberrant expression of nutrient-response genes, and histone hyperacetylation. Islets from mice adapted to chronically increased insulin demand exhibited shared epigenetic and transcriptional changes. Moreover, we found that genetic variants associated with type 2 diabetes were enriched at LSD1-bound sites in human islets, suggesting that interpretation of nutrient signals is genetically determined and clinically relevant. Overall, these studies revealed that adaptive insulin secretion involves Lsd1-mediated coupling of nutrient state to regulation of the islet epigenome. American Society for Clinical Investigation 2023-04-17 /pmc/articles/PMC10104905/ /pubmed/36821378 http://dx.doi.org/10.1172/JCI165208 Text en © 2023 Wortham et al. https://creativecommons.org/licenses/by/4.0/This work is licensed under the Creative Commons Attribution 4.0 International License. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Wortham, Matthew
Liu, Fenfen
Harrington, Austin R.
Fleischman, Johanna Y.
Wallace, Martina
Mulas, Francesca
Mallick, Medhavi
Vinckier, Nicholas K.
Cross, Benjamin R.
Chiou, Joshua
Patel, Nisha A.
Sui, Yinghui
McGrail, Carolyn
Jun, Yesl
Wang, Gaowei
Jhala, Ulupi S.
Schüle, Roland
Shirihai, Orian S.
Huising, Mark O.
Gaulton, Kyle J.
Metallo, Christian M.
Sander, Maike
Nutrient regulation of the islet epigenome controls adaptive insulin secretion
title Nutrient regulation of the islet epigenome controls adaptive insulin secretion
title_full Nutrient regulation of the islet epigenome controls adaptive insulin secretion
title_fullStr Nutrient regulation of the islet epigenome controls adaptive insulin secretion
title_full_unstemmed Nutrient regulation of the islet epigenome controls adaptive insulin secretion
title_short Nutrient regulation of the islet epigenome controls adaptive insulin secretion
title_sort nutrient regulation of the islet epigenome controls adaptive insulin secretion
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10104905/
https://www.ncbi.nlm.nih.gov/pubmed/36821378
http://dx.doi.org/10.1172/JCI165208
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