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Pancreatic islet expression profiling in diabetes-prone C57BLKS/J mice reveals transcriptional differences contributed by DBA loci, including Plagl1 and Nnt

BACKGROUND: C57BLKS/J (BLKS) mice are susceptible to islet exhaustion in insulin-resistant states as compared with C57BL6/J (B6) mice, as observed by the presence of the leptin receptor (Lepr) allele, Lepr(db/db). Furthermore, DBA2/J (DBA) mice are also susceptible to β-cell failure and share 25% of...

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Autores principales: Anderson, Abraham A, Helmering, Joan, Juan, Todd, Li, Chi-Ming, McCormick, Jocelyn, Graham, Melissa, Baker, Daniel M, Damore, Michael A, Véniant, Murielle M, Lloyd, David J
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2642818/
https://www.ncbi.nlm.nih.gov/pubmed/19161594
http://dx.doi.org/10.1186/1755-8417-2-1
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author Anderson, Abraham A
Helmering, Joan
Juan, Todd
Li, Chi-Ming
McCormick, Jocelyn
Graham, Melissa
Baker, Daniel M
Damore, Michael A
Véniant, Murielle M
Lloyd, David J
author_facet Anderson, Abraham A
Helmering, Joan
Juan, Todd
Li, Chi-Ming
McCormick, Jocelyn
Graham, Melissa
Baker, Daniel M
Damore, Michael A
Véniant, Murielle M
Lloyd, David J
author_sort Anderson, Abraham A
collection PubMed
description BACKGROUND: C57BLKS/J (BLKS) mice are susceptible to islet exhaustion in insulin-resistant states as compared with C57BL6/J (B6) mice, as observed by the presence of the leptin receptor (Lepr) allele, Lepr(db/db). Furthermore, DBA2/J (DBA) mice are also susceptible to β-cell failure and share 25% of their genome with BLKS; thus the DBA genome may contribute to β-cell dysfunction in BLKS mice. RESULTS: Here we show that BLKS mice exhibit elevated insulin secretion, as evidenced by improved glucose tolerance and increased islet insulin secretion compared with B6 mice, and describe interstrain transcriptional differences in glucose response. Transcriptional differences between BLKS and B6 mice were identified by expression profiling of isolated islets from both strains. Genomic mapping of gene expression differences demonstrated a significant association of expression differences with DBA loci in BLKS mice (P = 4×10(-27)). CONCLUSION: Two genes, Nicotinamide nucleotide transhydrogenase (Nnt) and Pleiomorphic adenoma gene like 1 (Plagl1), were 4 and 7.2-fold higher respectively in BLKS islets, and may be major contributors to increased insulin secretion by BLKS islets. Contrary to reports for B6 mice, BLKS mice do not harbor a mutant Nnt gene. We detected 16 synonymous polymorphisms and a two-amino acid deletion in the Plagl1 gene in BLKS mice. Several inflammatory glucose-responsive genes are expressed at a higher level in BLKS, suggesting an inflammatory component to BLKS islet dysfunction. This study describes physiological differences between BLKS and B6 mice, and provides evidence for a causative role of the DBA genome in β-cell dysfunction in BLKS mice.
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spelling pubmed-26428182009-02-14 Pancreatic islet expression profiling in diabetes-prone C57BLKS/J mice reveals transcriptional differences contributed by DBA loci, including Plagl1 and Nnt Anderson, Abraham A Helmering, Joan Juan, Todd Li, Chi-Ming McCormick, Jocelyn Graham, Melissa Baker, Daniel M Damore, Michael A Véniant, Murielle M Lloyd, David J Pathogenetics Research BACKGROUND: C57BLKS/J (BLKS) mice are susceptible to islet exhaustion in insulin-resistant states as compared with C57BL6/J (B6) mice, as observed by the presence of the leptin receptor (Lepr) allele, Lepr(db/db). Furthermore, DBA2/J (DBA) mice are also susceptible to β-cell failure and share 25% of their genome with BLKS; thus the DBA genome may contribute to β-cell dysfunction in BLKS mice. RESULTS: Here we show that BLKS mice exhibit elevated insulin secretion, as evidenced by improved glucose tolerance and increased islet insulin secretion compared with B6 mice, and describe interstrain transcriptional differences in glucose response. Transcriptional differences between BLKS and B6 mice were identified by expression profiling of isolated islets from both strains. Genomic mapping of gene expression differences demonstrated a significant association of expression differences with DBA loci in BLKS mice (P = 4×10(-27)). CONCLUSION: Two genes, Nicotinamide nucleotide transhydrogenase (Nnt) and Pleiomorphic adenoma gene like 1 (Plagl1), were 4 and 7.2-fold higher respectively in BLKS islets, and may be major contributors to increased insulin secretion by BLKS islets. Contrary to reports for B6 mice, BLKS mice do not harbor a mutant Nnt gene. We detected 16 synonymous polymorphisms and a two-amino acid deletion in the Plagl1 gene in BLKS mice. Several inflammatory glucose-responsive genes are expressed at a higher level in BLKS, suggesting an inflammatory component to BLKS islet dysfunction. This study describes physiological differences between BLKS and B6 mice, and provides evidence for a causative role of the DBA genome in β-cell dysfunction in BLKS mice. BioMed Central 2009-01-22 /pmc/articles/PMC2642818/ /pubmed/19161594 http://dx.doi.org/10.1186/1755-8417-2-1 Text en Copyright © 2009 Anderson et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License ( (http://creativecommons.org/licenses/by/2.0) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Anderson, Abraham A
Helmering, Joan
Juan, Todd
Li, Chi-Ming
McCormick, Jocelyn
Graham, Melissa
Baker, Daniel M
Damore, Michael A
Véniant, Murielle M
Lloyd, David J
Pancreatic islet expression profiling in diabetes-prone C57BLKS/J mice reveals transcriptional differences contributed by DBA loci, including Plagl1 and Nnt
title Pancreatic islet expression profiling in diabetes-prone C57BLKS/J mice reveals transcriptional differences contributed by DBA loci, including Plagl1 and Nnt
title_full Pancreatic islet expression profiling in diabetes-prone C57BLKS/J mice reveals transcriptional differences contributed by DBA loci, including Plagl1 and Nnt
title_fullStr Pancreatic islet expression profiling in diabetes-prone C57BLKS/J mice reveals transcriptional differences contributed by DBA loci, including Plagl1 and Nnt
title_full_unstemmed Pancreatic islet expression profiling in diabetes-prone C57BLKS/J mice reveals transcriptional differences contributed by DBA loci, including Plagl1 and Nnt
title_short Pancreatic islet expression profiling in diabetes-prone C57BLKS/J mice reveals transcriptional differences contributed by DBA loci, including Plagl1 and Nnt
title_sort pancreatic islet expression profiling in diabetes-prone c57blks/j mice reveals transcriptional differences contributed by dba loci, including plagl1 and nnt
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2642818/
https://www.ncbi.nlm.nih.gov/pubmed/19161594
http://dx.doi.org/10.1186/1755-8417-2-1
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