Pdx1 maintains β cell identity and function by repressing an α cell program.
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Changhong Li | Maximilian Reichert | Franz Matschinsky | R. Stein | M. Reichert | F. Matschinsky | T. Singh | B. Stanger | N. Doliba | Changhong Li | Tao Gao | Brian D. McKenna | James T. Nguyen | Chenghua Yang | Archana Pannikar | Tingting Zhang | D. Stoffers | H. Edlund | Ben Z Stanger | Roland Stein | Nicolai Doliba | Doris A Stoffers | Tarjinder Singh | Helena Edlund | Tao Gao | Brian McKenna | James Nguyen | Chenghua Yang | Archana Pannikar | Tingting Zhang | James T Nguyen
[1] H. Edlund,et al. beta-cell-specific inactivation of the mouse Ipf1/Pdx1 gene results in loss of the beta-cell phenotype and maturity onset diabetes. , 1998, Genes & development.
[2] D. Botstein,et al. Cluster analysis and display of genome-wide expression patterns. , 1998, Proceedings of the National Academy of Sciences of the United States of America.
[3] B. Stanger,et al. Notch signaling controls liver development by regulating biliary differentiation , 2009, Development.
[4] Yuval Dor,et al. Adult pancreatic beta-cells are formed by self-duplication rather than stem-cell differentiation. , 2004, Nature.
[5] W. Schaffner,et al. Rapid detection of octamer binding proteins with 'mini-extracts', prepared from a small number of cells. , 1989, Nucleic acids research.
[6] B. Wicksteed,et al. Conditional Gene Targeting in Mouse Pancreatic-Cells Analysis of Ectopic Cre Transgene Expression in the Brain , 2010 .
[7] C. Wright,et al. pdx-1 function is specifically required in embryonic beta cells to generate appropriate numbers of endocrine cell types and maintain glucose homeostasis. , 2008, Developmental biology.
[8] C. Mummery,et al. Conversion of Mature Human β-Cells Into Glucagon-Producing α-Cells , 2013, Diabetes.
[9] A. Penzo-Méndez,et al. Hippo signaling regulates differentiation and maintenance in the exocrine pancreas. , 2013, Gastroenterology.
[10] L. Sussel,et al. Nkx2.2 repressor complex regulates islet β-cell specification and prevents β-to-α-cell reprogramming. , 2011, Genes & development.
[11] Catherine May,et al. Pancreatic α-Cell Specific Deletion of Mouse Arx Leads to α-Cell Identity Loss , 2013, PloS one.
[12] P. Herrera,et al. Adult insulin- and glucagon-producing cells differentiate from two independent cell lineages. , 2000, Development.
[13] C. Wollheim,et al. Pdx1 Level Defines Pancreatic Gene Expression Pattern and Cell Lineage Differentiation* , 2001, The Journal of Biological Chemistry.
[14] O. Madsen,et al. The Ectopic Expression of Pax4 in the Mouse Pancreas Converts Progenitor Cells into α and Subsequently β Cells , 2009, Cell.
[15] M. Sander,et al. Nkx6.1 is essential for maintaining the functional state of pancreatic beta cells. , 2013, Cell reports.
[16] K. Kaestner,et al. Transcriptional regulation of α‐cell differentiation , 2011, Diabetes, obesity & metabolism.
[17] R. Robertson,et al. In vivo prevention of hyperglycemia also prevents glucotoxic effects on PDX-1 and insulin gene expression. , 1999, Diabetes.
[18] I. Artner,et al. MafA and MafB Regulate Genes Critical to β-Cells in a Unique Temporal Manner , 2010, Diabetes.
[19] P. Serup,et al. Embryonic endocrine pancreas and mature beta cells acquire alpha and PP cell phenotypes upon Arx misexpression. , 2007, The Journal of clinical investigation.
[20] I. Artner,et al. MafB: An Activator of the Glucagon Gene Expressed in Developing Islet α- and β-Cells , 2006 .
[21] 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.
[22] William L. Clarke,et al. Pancreatic agenesis attributable to a single nucleotide deletion in the human IPF1 gene coding sequence , 1997, Nature Genetics.
[23] B. Wicksteed,et al. Conditional Gene Targeting in Mouse Pancreatic β-Cells , 2010, Diabetes.
[24] C. Wright,et al. Context-specific a-tob-cell reprogramming by forced Pdx 1 expression , 2011 .
[25] C. Talchai,et al. Pancreatic β Cell Dedifferentiation as a Mechanism of Diabetic β Cell Failure , 2012, Cell.
[26] I. Artner,et al. MafB is required for islet β cell maturation , 2007, Proceedings of the National Academy of Sciences.
[27] B. Hogan,et al. PDX-1 is required for pancreatic outgrowth and differentiation of the rostral duodenum. , 1996, Development.
[28] Ahmed Mansouri,et al. Opposing actions of Arx and Pax4 in endocrine pancreas development. , 2003, Genes & development.
[29] C. Stanley,et al. Mechanism of Hyperinsulinism in Short-chain 3-Hydroxyacyl-CoA Dehydrogenase Deficiency Involves Activation of Glutamate Dehydrogenase* , 2010, The Journal of Biological Chemistry.
[30] H. Edlund,et al. Insulin-promoter-factor 1 is required for pancreas development in mice , 1994, Nature.
[31] P. Serup,et al. Embryonic endocrine pancreas and mature β cells acquire α and PP cell phenotypes upon Arx misexpression , 2007 .
[32] C. Stanley,et al. Regulation of Glucagon Secretion in Normal and Diabetic Human Islets by γ-Hydroxybutyrate and Glycine* , 2012, The Journal of Biological Chemistry.
[33] P. Herrera,et al. Conversion of Adult Pancreatic α-cells to β-cells After Extreme β-cell Loss , 2010, Nature.
[34] J. D. Engel,et al. MafA Is a Key Regulator of Glucose-Stimulated Insulin Secretion , 2005, Molecular and Cellular Biology.
[35] S. Bonner-Weir,et al. A switch from MafB to MafA expression accompanies differentiation to pancreatic beta-cells. , 2006, Developmental biology.
[36] Guoping Fan,et al. Pancreatic β cell identity is maintained by DNA methylation-mediated repression of Arx. , 2011, Developmental cell.
[37] Anil Bhushan,et al. The replication of beta cells in normal physiology, in disease and for therapy. , 2007, Nature clinical practice. Endocrinology & metabolism.
[38] Maike Sander,et al. Inactivation of specific β cell transcription factors in type 2 diabetes. , 2013, The Journal of clinical investigation.
[39] L. Sussel,et al. FoxA2, Nkx2.2, and PDX-1 Regulate Islet β-Cell-Specific mafA Expression through Conserved Sequences Located between Base Pairs −8118 and −7750 Upstream from the Transcription Start Site , 2006, Molecular and Cellular Biology.
[40] D. Melton,et al. Direct evidence for the pancreatic lineage: NGN3+ cells are islet progenitors and are distinct from duct progenitors. , 2002, Development.
[41] I. Artner,et al. MafB: an activator of the glucagon gene expressed in developing islet alpha- and beta-cells. , 2006, Diabetes.
[42] C. Pouponnot,et al. Reexpression of oncoprotein MafB in proliferative β-cells and Men1 insulinomas in mouse , 2012, Oncogene.