Gene compensation by members of the myogenic regulatory factor (MRF) family has been proposed to explain the apparent normal adult phenotype of MyoD(-/-) mice. Nerve and field stimulation were used to investigate contraction properties of muscle from MyoD(-/-) mice, and molecular approaches were used to investigate satellite-cell behavior. We demonstrate that MyoD deletion results in major alterations in the organization of the neuromuscular junction, which have a dramatic influence on the physiological contractile properties of skeletal muscle. Second, we show that the lineage progression of satellite cells (especially initial proliferation) in the absence of MyoD is abnormal and linked to perturbations in the nuclear localization of beta-...
Myogenin is a member of the MyoD family of skeletal muscle specific bHLH transcription factors. All ...
Satellite cells are an adult stem cell population that provide for the regeneration of skeletal musc...
AbstractSkeletal myogenesis in the embryo is regulated by the coordinated expression of the MyoD fam...
AbstractMyoD-deficient mice are without obvious deleterious muscle phenotype during embryogenesis an...
MyoD-deficient mice are without obvious deleterious muscle phenotype during embryogenesis and fetal ...
AbstractSatellite cells from adult rat muscle coexpress proliferating cell nuclear antigen and MyoD ...
AbstractSatellite cells are tissue-specific stem cells responsible for skeletal muscle growth and re...
Skeletal muscle growth and regeneration rely on myogenic progenitor and satellite cells, the stem ce...
SummarySkeletal muscle growth and regeneration rely on myogenic progenitor and satellite cells, the ...
MyoD and Myf5 are transcription factors that regulate myogenesis by promoting satellite cell transcr...
Muscle satellite cells are responsible for the postnatal growth and robust regeneration capacity of ...
Skeletal muscle satellite cells (SCs) are tissue-specific adult stem cells responsible for muscle gr...
Satellite cells are the resident stem cells found in adult skeletal muscle. These tissue-specific st...
Although mechanisms regulating the formation of embryonic skeletal muscle are well characterized, le...
Background: MyoD is a transcription factor implicated in the regulation of adult muscle gene express...
Myogenin is a member of the MyoD family of skeletal muscle specific bHLH transcription factors. All ...
Satellite cells are an adult stem cell population that provide for the regeneration of skeletal musc...
AbstractSkeletal myogenesis in the embryo is regulated by the coordinated expression of the MyoD fam...
AbstractMyoD-deficient mice are without obvious deleterious muscle phenotype during embryogenesis an...
MyoD-deficient mice are without obvious deleterious muscle phenotype during embryogenesis and fetal ...
AbstractSatellite cells from adult rat muscle coexpress proliferating cell nuclear antigen and MyoD ...
AbstractSatellite cells are tissue-specific stem cells responsible for skeletal muscle growth and re...
Skeletal muscle growth and regeneration rely on myogenic progenitor and satellite cells, the stem ce...
SummarySkeletal muscle growth and regeneration rely on myogenic progenitor and satellite cells, the ...
MyoD and Myf5 are transcription factors that regulate myogenesis by promoting satellite cell transcr...
Muscle satellite cells are responsible for the postnatal growth and robust regeneration capacity of ...
Skeletal muscle satellite cells (SCs) are tissue-specific adult stem cells responsible for muscle gr...
Satellite cells are the resident stem cells found in adult skeletal muscle. These tissue-specific st...
Although mechanisms regulating the formation of embryonic skeletal muscle are well characterized, le...
Background: MyoD is a transcription factor implicated in the regulation of adult muscle gene express...
Myogenin is a member of the MyoD family of skeletal muscle specific bHLH transcription factors. All ...
Satellite cells are an adult stem cell population that provide for the regeneration of skeletal musc...
AbstractSkeletal myogenesis in the embryo is regulated by the coordinated expression of the MyoD fam...