Background: In normal adult skeletal muscle, cell turnover is very slow. However, after an acute lesion or in chronic pathological conditions, such as primary myopathies, muscle stem cells, called satellite cells, are induced to proliferate, then withdraw definitively from the cell cycle and fuse to reconstitute functional myofibers. Results: We show that Maged1 is expressed at very low levels in normal adult muscle but is strongly induced after injury, during the early phase of myoblast differentiation. By comparing in vitro differentiation of myoblasts derived from wild-type or Maged1 knockout mice, we observed that Maged1 deficiency results in reduced levels of p21(CIP1/WAF1), defective cell cycle exit and impaired myotube maturation. In...
The regenerative capabilities of skeletal muscle allow it to grow in response to external stimulus s...
PMCID: PMC3212532This is an open-access article distributed under the terms of the Creative Commons ...
Mesoangioblasts (MABs) are vessel-associated stem cells that express pericyte marker genes and parti...
Background: In normal adult skeletal muscle, cell turnover is very slow. However, after an acute les...
Maged1 is a member of the large family of MAGE proteins that were initially identified as tumour ant...
The study of molecular mechanisms involving the regulation of skeletal muscle growth may play an imp...
Satellite cells are a distinct lineage of myogenic precursors that are responsible for the growth of...
Mature skeletal muscle has a uniquely robust capacity for regeneration. This ability is due in large...
Mammalian skeletal muscles are capable of regeneration after injury. Quiescent satellite cells are a...
Adult skeletal muscle has a robust capacity for regeneration, partially recapitulating the embryonic...
Here, we identify a role for the matrilin-2 (Matn2) extracellular matrix protein in controlling the ...
Abstract The myogenic factor Myf5 defines the onset of myogenesis in mammals during development. Mic...
In adult skeletal muscle, brain-derived neurotrophic factor (BDNF) is expressed in a reserve populat...
The myogenic factor Myf5 defines the onset of myogenesis in mammals during development. Mice lacking...
AbstractMyoD-deficient mice are without obvious deleterious muscle phenotype during embryogenesis an...
The regenerative capabilities of skeletal muscle allow it to grow in response to external stimulus s...
PMCID: PMC3212532This is an open-access article distributed under the terms of the Creative Commons ...
Mesoangioblasts (MABs) are vessel-associated stem cells that express pericyte marker genes and parti...
Background: In normal adult skeletal muscle, cell turnover is very slow. However, after an acute les...
Maged1 is a member of the large family of MAGE proteins that were initially identified as tumour ant...
The study of molecular mechanisms involving the regulation of skeletal muscle growth may play an imp...
Satellite cells are a distinct lineage of myogenic precursors that are responsible for the growth of...
Mature skeletal muscle has a uniquely robust capacity for regeneration. This ability is due in large...
Mammalian skeletal muscles are capable of regeneration after injury. Quiescent satellite cells are a...
Adult skeletal muscle has a robust capacity for regeneration, partially recapitulating the embryonic...
Here, we identify a role for the matrilin-2 (Matn2) extracellular matrix protein in controlling the ...
Abstract The myogenic factor Myf5 defines the onset of myogenesis in mammals during development. Mic...
In adult skeletal muscle, brain-derived neurotrophic factor (BDNF) is expressed in a reserve populat...
The myogenic factor Myf5 defines the onset of myogenesis in mammals during development. Mice lacking...
AbstractMyoD-deficient mice are without obvious deleterious muscle phenotype during embryogenesis an...
The regenerative capabilities of skeletal muscle allow it to grow in response to external stimulus s...
PMCID: PMC3212532This is an open-access article distributed under the terms of the Creative Commons ...
Mesoangioblasts (MABs) are vessel-associated stem cells that express pericyte marker genes and parti...