International audienceNotch signalling acts in virtually every tissue during the lifetime of metazoans. Recent studies have pointed to multiple roles for Notch in stem cells during quiescence, proliferation, temporal specification, and maintenance of the niche architecture. Skeletal muscle has served as an excellent paradigm to examine these diverse roles as embryonic, foetal, and adult skeletal muscle stem cells have different molecular signatures and functional properties, reflecting their developmental specification during ontology. Notably, Notch signalling has emerged as a major regulator of all muscle stem cells. This review will provide an overview of Notch signalling during myogenic development and postnatally, and underscore the se...
Notch proteins regulate a broad spectrum of cell fate decisions and differentiation processes during...
International audienceA central question in development is to define how the equilibrium between cel...
International audienceSignificance During embryonic development, multipotent stem cells progressivel...
The regenerative potential ofadult skeletal muscle is primarily attributed to satellite cells. Norma...
SummaryThe temporal switch from progenitor cell proliferation to differentiation is essential for ef...
Satellite cells (SCs) are myogenic stem cells found in skeletal muscle that function to repair tissu...
Adult skeletal muscle contains a population of tissue~specific stem cells (satellite cells) that are...
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...
Muscle regeneration is mediated by the activity of resident muscle satellite cells (muSCs) that expr...
Notch genes encode cell surface proteins, which are evolutionary conserved and found in invertebrate...
SummarySkeletal muscle growth and regeneration rely on myogenic progenitor and satellite cells, the ...
Notch signaling is a conserved cell fate regulator during development and postnatal tissue regenerat...
Notch proteins regulate a broad spectrum of cell fate decisions and differentiation processes during...
Recently in Developmental Cell, Bröhl et al. (2012) reported that Notch regulates muscle stem cell h...
Notch proteins regulate a broad spectrum of cell fate decisions and differentiation processes during...
International audienceA central question in development is to define how the equilibrium between cel...
International audienceSignificance During embryonic development, multipotent stem cells progressivel...
The regenerative potential ofadult skeletal muscle is primarily attributed to satellite cells. Norma...
SummaryThe temporal switch from progenitor cell proliferation to differentiation is essential for ef...
Satellite cells (SCs) are myogenic stem cells found in skeletal muscle that function to repair tissu...
Adult skeletal muscle contains a population of tissue~specific stem cells (satellite cells) that are...
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...
Muscle regeneration is mediated by the activity of resident muscle satellite cells (muSCs) that expr...
Notch genes encode cell surface proteins, which are evolutionary conserved and found in invertebrate...
SummarySkeletal muscle growth and regeneration rely on myogenic progenitor and satellite cells, the ...
Notch signaling is a conserved cell fate regulator during development and postnatal tissue regenerat...
Notch proteins regulate a broad spectrum of cell fate decisions and differentiation processes during...
Recently in Developmental Cell, Bröhl et al. (2012) reported that Notch regulates muscle stem cell h...
Notch proteins regulate a broad spectrum of cell fate decisions and differentiation processes during...
International audienceA central question in development is to define how the equilibrium between cel...
International audienceSignificance During embryonic development, multipotent stem cells progressivel...