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Sox17 Regulates Insulin Secretion in the Normal and Pathologic Mouse β Cell

SOX17 is a key transcriptional regulator that can act by regulating other transcription factors including HNF1β and FOXA2, which are known to regulate postnatal β cell function. Given this, we investigated the role of SOX17 in the developing and postnatal pancreas and found a novel role for SOX17 in...

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Autores principales: Jonatan, Diva, Spence, Jason R., Method, Anna M., Kofron, Matthew, Sinagoga, Katie, Haataja, Leena, Arvan, Peter, Deutsch, Gail H., Wells, James M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4140688/
https://www.ncbi.nlm.nih.gov/pubmed/25144761
http://dx.doi.org/10.1371/journal.pone.0104675
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author Jonatan, Diva
Spence, Jason R.
Method, Anna M.
Kofron, Matthew
Sinagoga, Katie
Haataja, Leena
Arvan, Peter
Deutsch, Gail H.
Wells, James M.
author_facet Jonatan, Diva
Spence, Jason R.
Method, Anna M.
Kofron, Matthew
Sinagoga, Katie
Haataja, Leena
Arvan, Peter
Deutsch, Gail H.
Wells, James M.
author_sort Jonatan, Diva
collection PubMed
description SOX17 is a key transcriptional regulator that can act by regulating other transcription factors including HNF1β and FOXA2, which are known to regulate postnatal β cell function. Given this, we investigated the role of SOX17 in the developing and postnatal pancreas and found a novel role for SOX17 in regulating insulin secretion. Deletion of the Sox17 gene in the pancreas (Sox17-paLOF) had no observable impact on pancreas development. However, Sox17-paLOF mice had higher islet proinsulin protein content, abnormal trafficking of proinsulin, and dilated secretory organelles suggesting that Sox17-paLOF adult mice are prediabetic. Consistant with this, Sox17-paLOF mice were more susceptible to aged-related and high fat diet-induced hyperglycemia and diabetes. Overexpression of Sox17 in mature β cells using Ins2-rtTA driver mice resulted in precocious secretion of proinsulin. Transcriptionally, SOX17 appears to broadly regulate secretory networks since a 24-hour pulse of SOX17 expression resulted in global transcriptional changes in factors that regulate hormone transport and secretion. Lastly, transient SOX17 overexpression was able to reverse the insulin secretory defects observed in MODY4 animals and restored euglycemia. Together, these data demonstrate a critical new role for SOX17 in regulating insulin trafficking and secretion and that modulation of Sox17-regulated pathways might be used therapeutically to improve cell function in the context of diabetes.
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spelling pubmed-41406882014-08-25 Sox17 Regulates Insulin Secretion in the Normal and Pathologic Mouse β Cell Jonatan, Diva Spence, Jason R. Method, Anna M. Kofron, Matthew Sinagoga, Katie Haataja, Leena Arvan, Peter Deutsch, Gail H. Wells, James M. PLoS One Research Article SOX17 is a key transcriptional regulator that can act by regulating other transcription factors including HNF1β and FOXA2, which are known to regulate postnatal β cell function. Given this, we investigated the role of SOX17 in the developing and postnatal pancreas and found a novel role for SOX17 in regulating insulin secretion. Deletion of the Sox17 gene in the pancreas (Sox17-paLOF) had no observable impact on pancreas development. However, Sox17-paLOF mice had higher islet proinsulin protein content, abnormal trafficking of proinsulin, and dilated secretory organelles suggesting that Sox17-paLOF adult mice are prediabetic. Consistant with this, Sox17-paLOF mice were more susceptible to aged-related and high fat diet-induced hyperglycemia and diabetes. Overexpression of Sox17 in mature β cells using Ins2-rtTA driver mice resulted in precocious secretion of proinsulin. Transcriptionally, SOX17 appears to broadly regulate secretory networks since a 24-hour pulse of SOX17 expression resulted in global transcriptional changes in factors that regulate hormone transport and secretion. Lastly, transient SOX17 overexpression was able to reverse the insulin secretory defects observed in MODY4 animals and restored euglycemia. Together, these data demonstrate a critical new role for SOX17 in regulating insulin trafficking and secretion and that modulation of Sox17-regulated pathways might be used therapeutically to improve cell function in the context of diabetes. Public Library of Science 2014-08-21 /pmc/articles/PMC4140688/ /pubmed/25144761 http://dx.doi.org/10.1371/journal.pone.0104675 Text en © 2014 Jonatan et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Jonatan, Diva
Spence, Jason R.
Method, Anna M.
Kofron, Matthew
Sinagoga, Katie
Haataja, Leena
Arvan, Peter
Deutsch, Gail H.
Wells, James M.
Sox17 Regulates Insulin Secretion in the Normal and Pathologic Mouse β Cell
title Sox17 Regulates Insulin Secretion in the Normal and Pathologic Mouse β Cell
title_full Sox17 Regulates Insulin Secretion in the Normal and Pathologic Mouse β Cell
title_fullStr Sox17 Regulates Insulin Secretion in the Normal and Pathologic Mouse β Cell
title_full_unstemmed Sox17 Regulates Insulin Secretion in the Normal and Pathologic Mouse β Cell
title_short Sox17 Regulates Insulin Secretion in the Normal and Pathologic Mouse β Cell
title_sort sox17 regulates insulin secretion in the normal and pathologic mouse β cell
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4140688/
https://www.ncbi.nlm.nih.gov/pubmed/25144761
http://dx.doi.org/10.1371/journal.pone.0104675
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