AbstractSkeletal myogenesis in the embryo is regulated by the coordinated expression of the MyoD family of muscle regulatory factors (MRFs). MyoD and Myf-5, which are the primary muscle lineage-determining factors, function in a partially redundant manner to establish muscle progenitor cell identity. Previous diphtheria toxin (DTA)-mediated ablation studies showed that MyoD+ progenitors rescue myogenesis in embryos in which Myf-5-expressing cells were targeted for ablation, raising the possibility that the regulative behavior of distinct, MRF-expressing populations explains the functional compensatory activities of these MRFs. Using MyoDiCre mice, we show that DTA-mediated ablation of MyoD-expressing cells results in the cessation of myogen...
Skeletal muscle satellite cells (SCs) are tissue-specific adult stem cells responsible for muscle gr...
MRF4 is one of four skeletal muscle specific regulatory genes, (the other three genes being MyoD, my...
MyoD-deficient mice are without obvious deleterious muscle phenotype during embryogenesis and fetal ...
AbstractGene targeting has indicated that Myf5 and MyoD are required for myogenic determination beca...
The development of myogenic cells is mainly determined by expression of two myogenic factors, Myf5 a...
AbstractGene targeting has indicated that Myf5 and MyoD are required for myogenic determination beca...
In the developing vertebrate embryo, multipotent cells of the paraxial mesoderm form epithelial sphe...
MyoD and Myf5 are transcription factors that regulate myogenesis by promoting satellite cell transcr...
MyoD and Myf5 are transcription factors that regulate myogenesis by promoting satellite cell transcr...
In the developing vertebrate embryo, multipotent cells of the paraxial mesoderm form epithelial sphe...
AbstractThe four myogenic basic helix-loop-helix proteins, MyoD, myogenin, Myf-5, and MRF4, can each...
MyoD or Myf5’s requirement for developmental myogenesis has been well established. However, their ro...
MyoD or Myf5’s requirement for developmental myogenesis has been well established. However, their ro...
AbstractTo further investigate the role of MyoD during skeletal myogenesis, we backcrossed mdx mutan...
The muscle determination gene MyoD is essential for normal development of hypaxial musculature in ve...
Skeletal muscle satellite cells (SCs) are tissue-specific adult stem cells responsible for muscle gr...
MRF4 is one of four skeletal muscle specific regulatory genes, (the other three genes being MyoD, my...
MyoD-deficient mice are without obvious deleterious muscle phenotype during embryogenesis and fetal ...
AbstractGene targeting has indicated that Myf5 and MyoD are required for myogenic determination beca...
The development of myogenic cells is mainly determined by expression of two myogenic factors, Myf5 a...
AbstractGene targeting has indicated that Myf5 and MyoD are required for myogenic determination beca...
In the developing vertebrate embryo, multipotent cells of the paraxial mesoderm form epithelial sphe...
MyoD and Myf5 are transcription factors that regulate myogenesis by promoting satellite cell transcr...
MyoD and Myf5 are transcription factors that regulate myogenesis by promoting satellite cell transcr...
In the developing vertebrate embryo, multipotent cells of the paraxial mesoderm form epithelial sphe...
AbstractThe four myogenic basic helix-loop-helix proteins, MyoD, myogenin, Myf-5, and MRF4, can each...
MyoD or Myf5’s requirement for developmental myogenesis has been well established. However, their ro...
MyoD or Myf5’s requirement for developmental myogenesis has been well established. However, their ro...
AbstractTo further investigate the role of MyoD during skeletal myogenesis, we backcrossed mdx mutan...
The muscle determination gene MyoD is essential for normal development of hypaxial musculature in ve...
Skeletal muscle satellite cells (SCs) are tissue-specific adult stem cells responsible for muscle gr...
MRF4 is one of four skeletal muscle specific regulatory genes, (the other three genes being MyoD, my...
MyoD-deficient mice are without obvious deleterious muscle phenotype during embryogenesis and fetal ...