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Development, ISSN 0950-1991, 01/2010, Volume 137, Issue 2, pp. 203 - 212
The transcription factor neurogenin 3 (Neurog3 or Ngn3) controls islet cell fate specification in multipotent pancreatic progenitor cells in the mouse embryo.... 
Mouse | Rfx | Endocrine | Zebrafish | Cell differentiation | Pancreas | Transcription factor | Neurogenin 3 | Life Sciences & Biomedicine | Developmental Biology | Science & Technology | Immunohistochemistry | Paired Box Transcription Factors - genetics | Homeodomain Proteins - metabolism | Pancreas - cytology | Winged-Helix Transcription Factors - metabolism | Embryo, Nonmammalian - metabolism | Stem Cells - cytology | Stem Cells - metabolism | Embryo, Mammalian - metabolism | Endocrine Cells - metabolism | In Situ Hybridization | Basic Helix-Loop-Helix Transcription Factors - metabolism | Gene Expression Regulation, Developmental | Islets of Langerhans - metabolism | Islets of Langerhans - cytology | Somatostatin - metabolism | Basic Helix-Loop-Helix Transcription Factors - genetics | Zebrafish Proteins - metabolism | Winged-Helix Transcription Factors - genetics | Cells, Cultured | Pancreas - metabolism | Transcription Factors - genetics | Reverse Transcriptase Polymerase Chain Reaction | Nerve Tissue Proteins - genetics | Pancreas - embryology | Homeodomain Proteins - genetics | Endoderm - metabolism | Ghrelin - metabolism | Nerve Tissue Proteins - metabolism | Transcription Factors - metabolism | Blotting, Northern | Animals | Endocrine Cells - cytology | Glucagon - metabolism | Mice | Zebrafish Proteins - genetics | In Vitro Techniques | Paired Box Transcription Factors - metabolism | Index Medicus | Development and Stem Cells
Journal Article
Journal Article
Stem cells (Dayton, Ohio), ISSN 1066-5099, 06/2013, Volume 31, Issue 6, pp. 1086 - 1096
The studies of differentiation of mouse or human embryonic stem cells (hESCs) into specific cell types of the intestinal cells would provide insights to the... 
Embryonic stem cells | Endoderm | In vitro differentiation | Intestine differentiation | Cell & Tissue Engineering | Life Sciences & Biomedicine | Hematology | Oncology | Biotechnology & Applied Microbiology | Science & Technology | Cell Biology | Embryonic Stem Cells - metabolism | Intestinal Mucosa - metabolism | Embryonic Stem Cells - cytology | Endoderm - physiology | Enterocytes - metabolism | Receptors, Notch - metabolism | Homeodomain Proteins - metabolism | Humans | Glycogen Synthase Kinase 3 beta | Intestines - metabolism | Wnt Proteins - metabolism | Intestinal Mucosa - cytology | Fibroblast Growth Factors - metabolism | Bone Morphogenetic Proteins - metabolism | Cell Differentiation - physiology | Pluripotent Stem Cells - cytology | Glycogen Synthase Kinase 3 - antagonists & inhibitors | Glycogen Synthase Kinase 3 - metabolism | Mice, Inbred ICR | Cell Lineage - physiology | Endoderm - metabolism | Pluripotent Stem Cells - metabolism | Amyloid Precursor Protein Secretases - metabolism | Animals | Cell Line, Tumor | Signal Transduction - physiology | Mice | Amyloid Precursor Protein Secretases - antagonists & inhibitors | Enterocytes - physiology | Intestines - cytology | Glucose metabolism | Bone morphogenetic proteins | Fibroblast growth factors | Synthesis | Glycogen | Proteins | Cellular biology | Stem cells | Index Medicus
Journal Article
Journal Article
Journal Article
Science (American Association for the Advancement of Science), ISSN 0036-8075, 5/2011, Volume 332, Issue 6032, pp. 963 - 966
Transcriptionally silent genes can be marked by histone modifications and regulatory proteins that indicate the genes' potential to be activated. Such marks... 
Chromatin | Liver | REPORTS | Stem cells | Multipotent stem cells | Embryonic cells | Pancreas | Embryonic stem cells | Pluripotent stem cells | Embryos | Endoderm | Science & Technology - Other Topics | Multidisciplinary Sciences | Science & Technology | Chromatin - metabolism | p300-CBP Transcription Factors - antagonists & inhibitors | Homeodomain Proteins - metabolism | Multipotent Stem Cells - metabolism | Pancreas - cytology | Liver - embryology | Bone Morphogenetic Proteins - metabolism | Hepatocytes - cytology | Chromatin Immunoprecipitation | p300-CBP Transcription Factors - genetics | Endoderm - cytology | Gene Expression Regulation, Developmental | Trans-Activators - genetics | Cell Differentiation | Acetylation | Cell Culture Techniques | Signal Transduction | Cell Separation | Liver - metabolism | Embryonic Induction | Embryonic Development | Pancreas - metabolism | Pancreas - embryology | Enhancer of Zeste Homolog 2 Protein | Homeodomain Proteins - genetics | Transcription Factors - metabolism | p300-CBP Transcription Factors - metabolism | Polycomb Repressive Complex 2 | Animals | Histone-Lysine N-Methyltransferase - metabolism | Multipotent Stem Cells - cytology | Regulatory Elements, Transcriptional | Trans-Activators - metabolism | Liver - cytology | Mice | Protein Processing, Post-Translational | Histones - metabolism | Histones | Physiological aspects | Proteins | Cellular biology | Developmental biology | Rodents | Index Medicus
Journal Article
Development (Cambridge), ISSN 1477-9129, 05/2013, Volume 140, Issue 12, pp. 2587 - 2596
Journal Article