Cell-cell interactions mediated by Notch are critical for the maintenance of skeletal muscle stem cells. However, dynamics, cellular source and identity of functional Notch ligands during expansion of the stem cell pool in muscle growth and regeneration remain poorly characterized. Here we demonstrate that oscillating Delta-like 1 (Dll1) produced by myogenic cells is an indispensable Notch ligand for self-renewal of muscle stem cells in mice. Dll1 expression is controlled by the Notch target Hes1 and the muscle regulatory factor MyoD. Consistent with our mathematical model, our experimental analyses show that Hes1 acts as the oscillatory pacemaker, whereas MyoD regulates robust Dll1 expression. Interfering with Dll1 oscillations without cha...
Notch signaling is a conserved cell fate regulator during development and postnatal tissue regenerat...
Somatic stem cells hold attractive potential for the treatment of muscular dystrophies (MDs). Mesoan...
Delta-like 1homolog (Dlk1) is an imprinted gene encoding a transmembrane protein whose increased exp...
International audienceCell-cell interactions mediated by Notch are critical for the maintenance of s...
The balance between proliferation and differentiation of muscle stem cells is tightly controlled, en...
Notch signaling regulates tissue morphogenesis through cell–cell interactions. The Notch effectors H...
Muscle stem cell transplantation possesses great potential for long-term repair of dys-trophic muscl...
Myogenic stem cells are a promising avenue for the treatment of muscular disorders. Freshly isolated...
International audienceMyogenic stem cells are a promising avenue for the treatment of muscular disor...
The Notch pathway is an evolutionarily conserved signaling cascade that regulates many cell fate dec...
Doctor of PhilosophyDepartment of BiochemistryAnna ZolkiewskaMuscle satellite cells are the primary ...
AbstractCraniofacial and trunk skeletal muscles are evolutionarily distinct and derive from cranial ...
SummarySkeletal muscle growth and regeneration rely on myogenic progenitor and satellite cells, the ...
Craniofacial and trunk skeletal muscles are evolutionarily distinct and derive from cranial and somi...
International audienceA central question in development is to define how the equilibrium between cel...
Notch signaling is a conserved cell fate regulator during development and postnatal tissue regenerat...
Somatic stem cells hold attractive potential for the treatment of muscular dystrophies (MDs). Mesoan...
Delta-like 1homolog (Dlk1) is an imprinted gene encoding a transmembrane protein whose increased exp...
International audienceCell-cell interactions mediated by Notch are critical for the maintenance of s...
The balance between proliferation and differentiation of muscle stem cells is tightly controlled, en...
Notch signaling regulates tissue morphogenesis through cell–cell interactions. The Notch effectors H...
Muscle stem cell transplantation possesses great potential for long-term repair of dys-trophic muscl...
Myogenic stem cells are a promising avenue for the treatment of muscular disorders. Freshly isolated...
International audienceMyogenic stem cells are a promising avenue for the treatment of muscular disor...
The Notch pathway is an evolutionarily conserved signaling cascade that regulates many cell fate dec...
Doctor of PhilosophyDepartment of BiochemistryAnna ZolkiewskaMuscle satellite cells are the primary ...
AbstractCraniofacial and trunk skeletal muscles are evolutionarily distinct and derive from cranial ...
SummarySkeletal muscle growth and regeneration rely on myogenic progenitor and satellite cells, the ...
Craniofacial and trunk skeletal muscles are evolutionarily distinct and derive from cranial and somi...
International audienceA central question in development is to define how the equilibrium between cel...
Notch signaling is a conserved cell fate regulator during development and postnatal tissue regenerat...
Somatic stem cells hold attractive potential for the treatment of muscular dystrophies (MDs). Mesoan...
Delta-like 1homolog (Dlk1) is an imprinted gene encoding a transmembrane protein whose increased exp...