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The EMBO Journal, ISSN 0261-4189, 03/2004, Volume 23, Issue 5, pp. 1155 - 1165
Epithelial‐to‐mesenchymal transitions (EMTs) underlie cell plasticity required in embryonic development and frequently observed in advanced carcinogenesis.... 
epithelial | development | neoplasm | transforming growth factor‐β | differentiation | signal transduction | Neoplasm | Development | Signal transduction | Differentiation | Transforming growth factor-β | Epithelial | SMAD PROTEINS | BIOCHEMISTRY & MOLECULAR BIOLOGY | E-CADHERIN | CELL BIOLOGY | transforming growth factor-beta | RESPONSES | GROWTH-FACTOR-BETA | CELL PLASTICITY | MICE | PROMOTER | TRANSCRIPTION FACTOR | PROGRESSION | TRANSDIFFERENTIATION | Epithelial Cells - metabolism | Cadherins - metabolism | Humans | Mesoderm - cytology | Promoter Regions, Genetic - genetics | DNA-Binding Proteins - metabolism | Receptors, Notch | Trans-Activators - genetics | Cell Differentiation | Membrane Proteins - metabolism | Response Elements - genetics | Epithelial Cells - cytology | Repressor Proteins - metabolism | Basic Helix-Loop-Helix Transcription Factors | Signal Transduction | Cells, Cultured | Repressor Proteins - genetics | Keratinocytes - cytology | Smad4 Protein | DNA-Binding Proteins - genetics | Cell Adhesion | Smad3 Protein | Animals | Transforming Growth Factor beta - genetics | Keratinocytes - metabolism | Dogs | Protein Binding | Trans-Activators - metabolism | Mesoderm - metabolism | Mice | Transcription, Genetic - genetics | Transforming Growth Factor beta - metabolism | Cell Movement | Hey1 protein | transforming growth factor-β
Journal Article
Circulation, ISSN 0009-7322, 07/2016, Volume 134, Issue 3, pp. 233 - 247
Journal Article
Proceedings of the National Academy of Sciences of the United States of America, ISSN 0027-8424, 4/2009, Volume 106, Issue 15, pp. 6315 - 6320
Notch has been linked to β-catenin-dependent tumorigenesis; however, the mechanisms leading to Notch activation and the contribution of the Notch pathway to... 
Intestines | Genes | Colorectal cancer | Cell lines | Stem cells | Antibodies | Gene expression regulation | Adenoma | Tumors | Cancer | APC | Beta-catenin | Intestine | Crosstalk | beta-catenin | PROGENITOR CELLS | MULTIPLE INTESTINAL NEOPLASIA | intestine | MULTIDISCIPLINARY SCIENCES | LIGAND JAGGED1 | C-MYC | CELL-PROLIFERATION | MICE LACKING | crosstalk | SIGNALING PATHWAY | PANETH CELLS | COLON-CARCINOMA | Receptors, Notch - metabolism | Colorectal Neoplasms - genetics | Humans | Gene Expression Regulation, Neoplastic | Gene Expression Profiling | Wnt Proteins - metabolism | TCF Transcription Factors - metabolism | Intercellular Signaling Peptides and Proteins - metabolism | Cell Nucleus - metabolism | Serrate-Jagged Proteins | Membrane Proteins - metabolism | Colorectal Neoplasms - metabolism | Jagged-1 Protein | Calcium-Binding Proteins - metabolism | Cell Line | Colorectal Neoplasms - blood supply | Signal Transduction | Membrane Proteins - genetics | Intercellular Signaling Peptides and Proteins - genetics | Mice, Transgenic | beta Catenin - metabolism | Animals | Alleles | Mice | Transcription, Genetic - genetics | Colorectal Neoplasms - pathology | Calcium-Binding Proteins - genetics | Cell proliferation | Carrier proteins | Development and progression | Genetic aspects | Cellular signal transduction | Carcinogenesis | Health aspects | Biological Sciences
Journal Article
Nature Communications, ISSN 2041-1723, 12/2018, Volume 9, Issue 1, pp. 2992 - 13
Journal Article
Arteriosclerosis, Thrombosis, and Vascular Biology, ISSN 1079-5642, 10/2011, Volume 31, Issue 10, pp. 2181 - 2192
OBJECTIVE—The aim of our study is to determine the cellular and molecular origin for the pericytes in infantile hemangioma (IH) and their functional role in... 
vasculogenesis | infantile hemangioma | Jagged1 | angiogenesis | pericytes | VESSEL MATURATION | NEGATIVE REGULATOR | ENDOTHELIAL PROGENITOR CELLS | ALAGILLE-SYNDROME | IN-VIVO | BLOOD-VESSELS | PERIPHERAL VASCULAR DISEASE | NOTCH LIGAND JAGGED1 | HEMATOLOGY | HUMAN TUMORS | Hemangioma - pathology | Muscle, Smooth, Vascular - metabolism | Coculture Techniques | Humans | Myocytes, Smooth Muscle - pathology | Male | Hemangioma - metabolism | Intercellular Signaling Peptides and Proteins - metabolism | Transfection | Neoplastic Stem Cells - metabolism | RNA Interference | Time Factors | Pericytes - pathology | Serrate-Jagged Proteins | Pericytes - transplantation | Neoplastic Stem Cells - pathology | Cell Transdifferentiation | Membrane Proteins - metabolism | Myocytes, Smooth Muscle - metabolism | Myocytes, Smooth Muscle - transplantation | Hemangioma - blood supply | Hemangioma - genetics | Jagged-1 Protein | Calcium-Binding Proteins - metabolism | Recombinant Proteins - metabolism | Signal Transduction | Endothelial Cells - metabolism | Membrane Proteins - genetics | Pericytes - metabolism | Cells, Cultured | Intercellular Signaling Peptides and Proteins - genetics | Cell Communication | Neoplastic Stem Cells - transplantation | Muscle, Smooth, Vascular - pathology | Animals | Mice, Nude | Neovascularization, Pathologic - genetics | Mice | Neovascularization, Pathologic - metabolism | Calcium-Binding Proteins - genetics | vascular progenitor cells | JAGGED1 | endothelial progenitor cells
Journal Article
Journal Article