How stable is repression of disallowed genes in pancreatic islets in response to metabolic stress?
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M. Granvik | K. Lemaire | P. Gilon | F. Schuit | L. Goyvaerts | L. van Lommel | A. Schraenen | A. Gómez-Ruiz | P. in 't Veld
[1] K. Lemaire,et al. Disallowed and Allowed Gene Expression: Two Faces of Mature Islet Beta Cells. , 2016, Annual review of nutrition.
[2] J. Holst,et al. Transcriptomic profiling of pancreatic alpha, beta and delta cell populations identifies delta cells as a principal target for ghrelin in mouse islets , 2016, Diabetologia.
[3] C. Donaldson,et al. Comprehensive alpha, beta and delta cell transcriptomes reveal that ghrelin selectively activates delta cells and promotes somatostatin release from pancreatic islets , 2016, Molecular metabolism.
[4] A. Klochendler,et al. p16Ink4a-induced senescence of pancreatic beta cells enhances insulin secretion , 2016, Nature Medicine.
[5] Michael B. Stadler,et al. Aging-Dependent Demethylation of Regulatory Elements Correlates with Chromatin State and Improved β Cell Function. , 2015, Cell metabolism.
[6] M. Hebrok,et al. DNA methylation directs functional maturation of pancreatic β cells. , 2015, The Journal of clinical investigation.
[7] Rockann E. Mosser,et al. High-fat diet-induced β-cell proliferation occurs prior to insulin resistance in C57Bl/6J male mice. , 2015, American journal of physiology. Endocrinology and metabolism.
[8] Rockann E. Mosser,et al. High-fat diet-induced-cell proliferation occurs prior to insulin resistance in C 57 Bl / 6 J male mice , 2015 .
[9] Satoru Takahashi,et al. MafA is critical for maintenance of the mature beta cell phenotype in mice , 2015, Diabetologia.
[10] G. Rutter,et al. Rfx6 Maintains the Functional Identity of Adult Pancreatic β Cells , 2014, Cell reports.
[11] H. Nam,et al. Young capillary vessels rejuvenate aged pancreatic islets , 2014, Proceedings of the National Academy of Sciences.
[12] J. Kushner. The role of aging upon β cell turnover. , 2013, The Journal of clinical investigation.
[13] Patrik Rorsman,et al. Regulation of insulin secretion in human pancreatic islets. , 2013, Annual review of physiology.
[14] M. Vidal,et al. Ring1b bookmarks genes in pancreatic embryonic progenitors for repression in adult β cells. , 2013, Genes & development.
[15] C. Talchai,et al. Pancreatic β Cell Dedifferentiation as a Mechanism of Diabetic β Cell Failure , 2012, Cell.
[16] G. Rutter,et al. Overexpression of Monocarboxylate Transporter-1 (Slc16a1) in Mouse Pancreatic β-Cells Leads to Relative Hyperinsulinism During Exercise , 2012, Diabetes.
[17] M. Granvik,et al. β-Cell–Specific Gene Repression: A Mechanism to Protect Against Inappropriate or Maladjusted Insulin Secretion? , 2012, Diabetes.
[18] M. Gannon,et al. Type 2 Diabetes and the Aging Pancreatic Beta Cell , 2011, Aging.
[19] Lieven Thorrez,et al. Tissue-specific disallowance of housekeeping genes: the other face of cell differentiation. , 2011, Genome research.
[20] S. Bonner-Weir,et al. Mafa expression enhances glucose-responsive insulin secretion in neonatal rat beta cells , 2011, Diabetologia.
[21] J. Mallet,et al. Placental lactogens induce serotonin biosynthesis in a subset of mouse beta cells during pregnancy , 2010, Diabetologia.
[22] M. Granvik,et al. mRNA expression analysis of cell cycle genes in islets of pregnant mice , 2010, Diabetologia.
[23] L. Tecott,et al. Serotonin Regulates Pancreatic β-Cell Mass during Pregnancy , 2010, Nature Medicine.
[24] M. Palassini,et al. Derepression of Polycomb targets during pancreatic organogenesis allows insulin-producing beta-cells to adopt a neural gene activity program. , 2010, Genome research.
[25] I. Shimomura,et al. Regulation of MafA Expression in Pancreatic β-Cells in db/db Mice With Diabetes , 2010, Diabetes.
[26] G. Rutter,et al. Identification of genes selectively disallowed in the pancreatic islet , 2010, Islets.
[27] K. Kaestner,et al. Expansion of β-cell mass in response to pregnancy , 2010, Trends in Endocrinology & Metabolism.
[28] K. Dewar,et al. Rfx6 Directs Islet Formation and Insulin Production in Mice and Humans , 2009, Nature.
[29] R. Kawamori,et al. Downregulation of ZnT8 expression in pancreatic β-cells of diabetic mice , 2009, Islets.
[30] M. Granvik,et al. Insulin crystallization depends on zinc transporter ZnT8 expression, but is not required for normal glucose homeostasis in mice , 2009, Proceedings of the National Academy of Sciences.
[31] A. Tarakhovsky,et al. Polycomb protein Ezh2 regulates pancreatic beta-cell Ink4a/Arf expression and regeneration in diabetes mellitus. , 2009, Genes & development.
[32] Douglas A. Melton,et al. In vivo reprogramming of adult pancreatic exocrine cells to β-cells , 2008, Nature.
[33] K. Lemaire,et al. Why expression of some genes is disallowed in beta-cells. , 2008, Biochemical Society transactions.
[34] P. Gilon,et al. The GluCre‐ROSA26EYFP mouse: A new model for easy identification of living pancreatic α‐cells , 2007 .
[35] J. Kere,et al. Physical exercise-induced hypoglycemia caused by failed silencing of monocarboxylate transporter 1 in pancreatic beta cells. , 2007, American journal of human genetics.
[36] P. Gilon,et al. The GluCre-ROSA26EYFP mouse: a new model for easy identification of living pancreatic alpha-cells. , 2007, FEBS letters.
[37] S. Kahn,et al. Mechanisms linking obesity to insulin resistance and type 2 diabetes , 2006, Nature.
[38] S. Lenzen,et al. Mitochondrial catalase overexpression protects insulin-producing cells against toxicity of reactive oxygen species and proinflammatory cytokines. , 2004, Diabetes.
[39] D. Coleman,et al. Temporal changes in pancreatic islet composition in c57bl/6j-db/db (diabetes) mice , 1983, Diabetologia.
[40] L. Aerts,et al. Immunocytochemical study of the endocrine pancreas in the rat during normal pregnancy and during experimental diabetic pregnancy , 1980, Diabetologia.
[41] H. Sone,et al. Pancreatic beta cell senescence contributes to the pathogenesis of type 2 diabetes in high-fat diet-induced diabetic mice , 2004, Diabetologia.
[42] A I Saeed,et al. TM4: a free, open-source system for microarray data management and analysis. , 2003, BioTechniques.
[43] Robert A. Rizza,et al. β-Cell Deficit and Increased β-Cell Apoptosis in Humans With Type 2 Diabetes , 2003, Diabetes.
[44] Robert A Rizza,et al. Beta-cell deficit and increased beta-cell apoptosis in humans with type 2 diabetes. , 2003, Diabetes.
[45] J. Kere,et al. Physical exercise-induced hyperinsulinemic hypoglycemia is an autosomal-dominant trait characterized by abnormal pyruvate-induced insulin release. , 2003, Diabetes.
[46] N. Seiler. Ornithine aminotransferase, a potential target for the treatment of hyperammonemias. , 2000, Current drug targets.
[47] D. Pipeleers,et al. Cellular Origin of Hexokinase in Pancreatic Islets* , 1999, The Journal of Biological Chemistry.
[48] S. Bonner-Weir,et al. Chronic Hyperglycemia Triggers Loss of Pancreatic β Cell Differentiation in an Animal Model of Diabetes* , 1999, The Journal of Biological Chemistry.
[49] D. Steiner,et al. The role of assembly in insulin's biosynthesis. , 1998, Current opinion in structural biology.
[50] F. Schuit. Factors determining the glucose sensitivity and glucose responsiveness of pancreatic beta cells. , 1996, Hormone research.
[51] M. J. MacDonald,et al. Low lactate dehydrogenase and high mitochondrial glycerol phosphate dehydrogenase in pancreatic beta-cells. Potential role in nutrient sensing. , 1994, The Journal of biological chemistry.
[52] J. Leahy,et al. The loss of GLUT2 expression by glucose-unresponsive beta cells of db/db mice is reversible and is induced by the diabetic environment. , 1992, The Journal of clinical investigation.
[53] J. Parsons,et al. Adaptation of islets of Langerhans to pregnancy: increased islet cell proliferation and insulin secretion correlates with the onset of placental lactogen secretion. , 1992, Endocrinology.
[54] D. Pipeleers,et al. Glucose stimulates proinsulin biosynthesis by a dose-dependent recruitment of pancreatic beta cells. , 1988, Proceedings of the National Academy of Sciences of the United States of America.
[55] D. Salomon,et al. Heterogeneity and contact-dependent regulation of hormone secretion by individual B cells. , 1986, Experimental cell research.
[56] D. Pipeleers,et al. A new in vitro model for the study of pancreatic A and B cells. , 1985, Endocrinology.
[57] P. Lacy,et al. Method for the Isolation of Intact Islets of Langerhans from the Rat Pancreas , 1967, Diabetes.