AbstractCraniofacial and trunk skeletal muscles are evolutionarily distinct and derive from cranial and somitic mesoderm, respectively. Different regulatory hierarchies act upstream of myogenic regulatory factors in cranial and somitic mesoderm, but the same core regulatory network – MyoD, Myf5 and Mrf4 – executes the myogenic differentiation program. Notch signaling controls self-renewal of myogenic progenitors as well as satellite cell homing during formation of trunk muscle, but its role in craniofacial muscles has been little investigated. We show here that the pool of myogenic progenitor cells in craniofacial muscle of Dll1LacZ/Ki mutant mice is depleted in early fetal development, which is accompanied by a major deficit in muscle grow...
AbstractGene targeting has indicated that Myf5 and MyoD are required for myogenic determination beca...
International audienceNotch signalling acts in virtually every tissue during the lifetime of metazoa...
Delta-like 1homolog (Dlk1) is an imprinted gene encoding a transmembrane protein whose increased exp...
AbstractCraniofacial and trunk skeletal muscles are evolutionarily distinct and derive from cranial ...
Craniofacial and trunk skeletal muscles are evolutionarily distinct and derive from cranial and somi...
SummarySkeletal muscle growth and regeneration rely on myogenic progenitor and satellite cells, the ...
Skeletal muscle growth and regeneration rely on myogenic progenitor and satellite cells, the stem ce...
Craniofacial muscles are small skeletal muscles involved in mastication, swallowing, vocalization an...
International audienceCell-cell interactions mediated by Notch are critical for the maintenance of s...
International audiencePostnatal skeletal muscle growth results from the activation of satellite cell...
The specification of the skeletal muscle lineage during craniofacial development is dependent on the...
International audienceThe myogenic basic helix-loop-helix (bHLH) transcription factors, Myf5, MyoD, ...
In this review we discuss the recent findings concerning the mechanisms that restrict somitic cells ...
SummaryGenetic regulatory networks governing skeletal myogenesis in the body are well understood, ye...
Notch signaling is a conserved cell fate regulator during development and postnatal tissue regenerat...
AbstractGene targeting has indicated that Myf5 and MyoD are required for myogenic determination beca...
International audienceNotch signalling acts in virtually every tissue during the lifetime of metazoa...
Delta-like 1homolog (Dlk1) is an imprinted gene encoding a transmembrane protein whose increased exp...
AbstractCraniofacial and trunk skeletal muscles are evolutionarily distinct and derive from cranial ...
Craniofacial and trunk skeletal muscles are evolutionarily distinct and derive from cranial and somi...
SummarySkeletal muscle growth and regeneration rely on myogenic progenitor and satellite cells, the ...
Skeletal muscle growth and regeneration rely on myogenic progenitor and satellite cells, the stem ce...
Craniofacial muscles are small skeletal muscles involved in mastication, swallowing, vocalization an...
International audienceCell-cell interactions mediated by Notch are critical for the maintenance of s...
International audiencePostnatal skeletal muscle growth results from the activation of satellite cell...
The specification of the skeletal muscle lineage during craniofacial development is dependent on the...
International audienceThe myogenic basic helix-loop-helix (bHLH) transcription factors, Myf5, MyoD, ...
In this review we discuss the recent findings concerning the mechanisms that restrict somitic cells ...
SummaryGenetic regulatory networks governing skeletal myogenesis in the body are well understood, ye...
Notch signaling is a conserved cell fate regulator during development and postnatal tissue regenerat...
AbstractGene targeting has indicated that Myf5 and MyoD are required for myogenic determination beca...
International audienceNotch signalling acts in virtually every tissue during the lifetime of metazoa...
Delta-like 1homolog (Dlk1) is an imprinted gene encoding a transmembrane protein whose increased exp...