Myoblast fusion (MF) is required for muscle growth and repair, and its alteration contributes to muscle diseases. The mechanisms governing this process are incompletely understood, and no epigenetic regulator has been previously described. Ash1L is an epigenetic activator belonging to the Trithorax group of proteins and is involved in FSHD muscular dystrophy, autism and cancer. Its physiological role in skeletal muscle is unknown. Here we report that Ash1L expression is positively correlated with MF and reduced in Duchenne muscular dystrophy. In vivo, ex vivo\ua0and in vitro experiments support a selective and evolutionary conserved requirement for Ash1L in MF. RNA- and ChIP-sequencing indicate that Ash1L is required to counteract Polycomb ...
Migration of myogenic cells is an important step in myogenesis and skeletal muscle repair. Migration...
peer reviewedMuscle formation is controlled by a number of key myogenic transcriptional regulators t...
Muscular dystrophies are severe disorders due to mutations in structural genes, and are characterize...
Background: In normal adult skeletal muscle, cell turnover is very slow. However, after an acute les...
AbstractThe fusion of myoblasts to make multinucleate muscle fibres is central to muscle development...
Mesoangioblasts (MABs) are vessel-associated stem cells that express pericyte marker genes and parti...
Duchenne Muscular Dystrophy (DMD) is an incurable progressive myopathy caused by the absence of the ...
MyoD is a master regulator of the skeletal muscle gene expression program. ChIP-Seq analysis has rec...
During muscle regeneration, the mechanism integrating environmental cues at the chromatin of muscle ...
Here, we identify a role for the matrilin-2 (Matn2) extracellular matrix protein in controlling the ...
Mammalian skeletal muscles are capable of regeneration after injury. Quiescent satellite cells are a...
Aims: Transforming growth factor-β (TGF-β) signalling is thought to contribute to the remodelling o...
Duchenne muscular dystrophy (DMD) is a fatal disease characterized by progressive skeletal muscle de...
Skeletal muscle possesses a high ability to regenerate after an insult or in pathological conditions...
AbstractCell–cell fusion is a fundamental cellular process that is essential for development as well...
Migration of myogenic cells is an important step in myogenesis and skeletal muscle repair. Migration...
peer reviewedMuscle formation is controlled by a number of key myogenic transcriptional regulators t...
Muscular dystrophies are severe disorders due to mutations in structural genes, and are characterize...
Background: In normal adult skeletal muscle, cell turnover is very slow. However, after an acute les...
AbstractThe fusion of myoblasts to make multinucleate muscle fibres is central to muscle development...
Mesoangioblasts (MABs) are vessel-associated stem cells that express pericyte marker genes and parti...
Duchenne Muscular Dystrophy (DMD) is an incurable progressive myopathy caused by the absence of the ...
MyoD is a master regulator of the skeletal muscle gene expression program. ChIP-Seq analysis has rec...
During muscle regeneration, the mechanism integrating environmental cues at the chromatin of muscle ...
Here, we identify a role for the matrilin-2 (Matn2) extracellular matrix protein in controlling the ...
Mammalian skeletal muscles are capable of regeneration after injury. Quiescent satellite cells are a...
Aims: Transforming growth factor-β (TGF-β) signalling is thought to contribute to the remodelling o...
Duchenne muscular dystrophy (DMD) is a fatal disease characterized by progressive skeletal muscle de...
Skeletal muscle possesses a high ability to regenerate after an insult or in pathological conditions...
AbstractCell–cell fusion is a fundamental cellular process that is essential for development as well...
Migration of myogenic cells is an important step in myogenesis and skeletal muscle repair. Migration...
peer reviewedMuscle formation is controlled by a number of key myogenic transcriptional regulators t...
Muscular dystrophies are severe disorders due to mutations in structural genes, and are characterize...