International audienceMaintenance of multipotency and how cells exit this state to adopt a specific fate are central questions in stem cell biology. During vertebrate development, multipotent cells of the dorsal somite, the dermomyotome, give rise to different lineages such as vascular smooth and skeletal muscle, regulated by the transcription factors Foxc2 and Pax3, respectively. Here we show reciprocal inhibition between Pax3 and Foxc2 in the mouse embryo. Using both genetic approaches and manipulation of external signals in somite explants, we demonstrate that the Pax3:Foxc2 ratio modulates myogenic versus vascular cell fates. This provides insight into how cell fate choices are orchestrated by these lineage genes in the dermomyotome
International audienceWe report expression of Pax3, an important regulator of skeletal muscle stem c...
AbstractThesplotch (Pax3)mouse mutant serves as a model for developmental defects of several types, ...
International audiencePAX3 belongs to the paired-homeobox family of transcription factors and plays ...
International audienceMaintenance of multipotency and how cells exit this state to adopt a specific ...
SummaryMaintenance of multipotency and how cells exit this state to adopt a specific fate are centra...
International audiencePax3 and Foxc2 have been shown genetically to mutually repress each other in t...
International audienceBACKGROUND: Pax3 is a key upstream regulator of the onset of myogenesis, contr...
International audienceSignificance During embryonic development, multipotent stem cells progressivel...
Abstract Background Pax3 is a key upstream regulator of the onset of myogenesis, controlling progeni...
International audienceMultiple cell types arise from cells in the dermomyotome of the somite that ex...
AbstractDuring vertebrate embryogenesis, the newly formed mesoderm is allocated to the paraxial, int...
Pax3 is an essential myogenic regulator of fetal and embryonic development, but its role in postnata...
Pax3/7-dependent stem cells play an essential role in skeletal muscle development. We now show that ...
International audienceWe report expression of Pax3, an important regulator of skeletal muscle stem c...
AbstractThesplotch (Pax3)mouse mutant serves as a model for developmental defects of several types, ...
International audiencePAX3 belongs to the paired-homeobox family of transcription factors and plays ...
International audienceMaintenance of multipotency and how cells exit this state to adopt a specific ...
SummaryMaintenance of multipotency and how cells exit this state to adopt a specific fate are centra...
International audiencePax3 and Foxc2 have been shown genetically to mutually repress each other in t...
International audienceBACKGROUND: Pax3 is a key upstream regulator of the onset of myogenesis, contr...
International audienceSignificance During embryonic development, multipotent stem cells progressivel...
Abstract Background Pax3 is a key upstream regulator of the onset of myogenesis, controlling progeni...
International audienceMultiple cell types arise from cells in the dermomyotome of the somite that ex...
AbstractDuring vertebrate embryogenesis, the newly formed mesoderm is allocated to the paraxial, int...
Pax3 is an essential myogenic regulator of fetal and embryonic development, but its role in postnata...
Pax3/7-dependent stem cells play an essential role in skeletal muscle development. We now show that ...
International audienceWe report expression of Pax3, an important regulator of skeletal muscle stem c...
AbstractThesplotch (Pax3)mouse mutant serves as a model for developmental defects of several types, ...
International audiencePAX3 belongs to the paired-homeobox family of transcription factors and plays ...