In this review we discuss the recent findings concerning the mechanisms that restrict somitic cells to the skeletal muscle fate, the myogenic regulatory factors controlling skeletal muscle differentiation and specification of myogenic cell lineages, the nature of inductive signals and the role of secreted proteins in embryonic patterning of the myotome. More specifically, we review data which strongly support the hypothesis that Myf-5 plays a unique role in development of epaxial muscle, that MyoD plays a unique role in development of hypaxial muscles derived from migratory myogenic precursor cells, and that both genes are responsible for development of intercostal and abdominal muscles (hypaxial muscles that develop from the dermatomal epi...
Proper formation of the musculoskeletal system requires the coordinated development of the muscle, c...
AbstractSkeletal myogenesis in the embryo is regulated by the coordinated expression of the MyoD fam...
In developing mouse embryos, MyoD family regulatory genes are expressed specifically in muscle precu...
In this review we discuss the recent findings concerning the mechanisms that restrict somitic cells ...
The final steps of vertebrate skeletal muscle development involve withdrawal of determined muscle pr...
The spatial and temporal expression pattern of the muscle regulatory gene Myf-6 (MRF4/herculin) has ...
The formation of skeletal muscle during vertebrate development involves the induction of mesoderm an...
AbstractGene targeting has indicated that Myf5 and MyoD are required for myogenic determination beca...
AbstractThe four myogenic basic helix-loop-helix proteins, MyoD, myogenin, Myf-5, and MRF4, can each...
The formation of skeletal muscle during vertebrate development involves the induction of mesoderm an...
AbstractDuring embryogenesis, cells from the ventral and dorsal parts of the somites give rise to sc...
Skeletal muscle is a highly specialized tissue composed of postmitotic, multinucleated muscle fibers...
Skeletal muscle is a highly specialized tissue composed of postmitotic, multinucleated muscle fibers...
The development of myogenic cells is mainly determined by expression of two myogenic factors, Myf5 a...
Current investigations of muscle development in vertebrate embryos are providing exciting insights i...
Proper formation of the musculoskeletal system requires the coordinated development of the muscle, c...
AbstractSkeletal myogenesis in the embryo is regulated by the coordinated expression of the MyoD fam...
In developing mouse embryos, MyoD family regulatory genes are expressed specifically in muscle precu...
In this review we discuss the recent findings concerning the mechanisms that restrict somitic cells ...
The final steps of vertebrate skeletal muscle development involve withdrawal of determined muscle pr...
The spatial and temporal expression pattern of the muscle regulatory gene Myf-6 (MRF4/herculin) has ...
The formation of skeletal muscle during vertebrate development involves the induction of mesoderm an...
AbstractGene targeting has indicated that Myf5 and MyoD are required for myogenic determination beca...
AbstractThe four myogenic basic helix-loop-helix proteins, MyoD, myogenin, Myf-5, and MRF4, can each...
The formation of skeletal muscle during vertebrate development involves the induction of mesoderm an...
AbstractDuring embryogenesis, cells from the ventral and dorsal parts of the somites give rise to sc...
Skeletal muscle is a highly specialized tissue composed of postmitotic, multinucleated muscle fibers...
Skeletal muscle is a highly specialized tissue composed of postmitotic, multinucleated muscle fibers...
The development of myogenic cells is mainly determined by expression of two myogenic factors, Myf5 a...
Current investigations of muscle development in vertebrate embryos are providing exciting insights i...
Proper formation of the musculoskeletal system requires the coordinated development of the muscle, c...
AbstractSkeletal myogenesis in the embryo is regulated by the coordinated expression of the MyoD fam...
In developing mouse embryos, MyoD family regulatory genes are expressed specifically in muscle precu...