AbstractBiochemical and cell culture studies have characterized the myocyte enhancer factor 2 (MEF2) transcriptional regulatory proteins as obligatory partners for the myogenic regulatory factors (MRFs) in the differentiation of myogenic cells in culture. However, the role of MEF2 activation in somitic myogenesis has not been fully characterized. Here, we report a critical interaction between the p38 mitogen-activated protein kinase (p38 MAPK) and MEF2 in the developing somite myotome. We document expression of MEF2A and p38 MAPK proteins in the somite of 9.5 dpc mouse embryos concurrent with Myf 5 protein expression. We also observed that abrogation of p38 MAPK signaling blocks MEF2 activation using a MEF2 transgenic ‘sensor’ mouse. Inhibi...
The formation of skeletal muscle during vertebrate development involves the induction of mesoderm an...
Activation of phosphatidylinositol 3-kinase (PI 3-kinase) or of Akt induces myoblast differentiation...
International audienceEmbryonic stem (ES) cells differentiate in vitro into all cell lineages. We pr...
Biochemical and cell culture studies have characterized the myocyte enhancer factor 2 (MEF2) transcr...
AbstractBiochemical and cell culture studies have characterized the myocyte enhancer factor 2 (MEF2)...
AbstractThe p38 MAPK signaling pathway is essential for skeletal muscle differentiation in tissue cu...
p38 mitogen-activated protein kinase (MAPK) has been well established as a critical positive regulat...
Current investigations of muscle development in vertebrate embryos are providing exciting insights i...
Abstract Background Extracellular stimuli induce gene...
Vertebrate skeletal muscle differentiation is a delicate and highly coordinated process in which mul...
Growth and repair of muscle requires a transition from proliferative myoblasts to functional, termin...
In this review we discuss the recent findings concerning the mechanisms that restrict somitic cells ...
The formation of skeletal muscle during vertebrate development involves the induction of mesoderm an...
International audienceEmbryonic stem (ES) cells differentiate in vitro into all cell lineages. We pr...
Myogenin, one of the four myogenic regulatory factors (MRFs), plays a pivotal role in the terminal d...
The formation of skeletal muscle during vertebrate development involves the induction of mesoderm an...
Activation of phosphatidylinositol 3-kinase (PI 3-kinase) or of Akt induces myoblast differentiation...
International audienceEmbryonic stem (ES) cells differentiate in vitro into all cell lineages. We pr...
Biochemical and cell culture studies have characterized the myocyte enhancer factor 2 (MEF2) transcr...
AbstractBiochemical and cell culture studies have characterized the myocyte enhancer factor 2 (MEF2)...
AbstractThe p38 MAPK signaling pathway is essential for skeletal muscle differentiation in tissue cu...
p38 mitogen-activated protein kinase (MAPK) has been well established as a critical positive regulat...
Current investigations of muscle development in vertebrate embryos are providing exciting insights i...
Abstract Background Extracellular stimuli induce gene...
Vertebrate skeletal muscle differentiation is a delicate and highly coordinated process in which mul...
Growth and repair of muscle requires a transition from proliferative myoblasts to functional, termin...
In this review we discuss the recent findings concerning the mechanisms that restrict somitic cells ...
The formation of skeletal muscle during vertebrate development involves the induction of mesoderm an...
International audienceEmbryonic stem (ES) cells differentiate in vitro into all cell lineages. We pr...
Myogenin, one of the four myogenic regulatory factors (MRFs), plays a pivotal role in the terminal d...
The formation of skeletal muscle during vertebrate development involves the induction of mesoderm an...
Activation of phosphatidylinositol 3-kinase (PI 3-kinase) or of Akt induces myoblast differentiation...
International audienceEmbryonic stem (ES) cells differentiate in vitro into all cell lineages. We pr...