Skeletal muscle gene expression is governed by the myogenic regulatory family (MRF) which includes MyoD (MYOD1) and myogenin (MYOG). MYOD1 and MYOG are known to regulate an overlapping set of muscle genes, but MYOD1 cannot compensate for the absence of MYOG in vivo. In vitro, late muscle genes have been shown to be bound by both factors, but require MYOG for activation. The molecular basis for this requirement was unclear. We show here that MYOG is required for the recruitment of TBP and RNAPII to muscle gene promoters, indicating that MYOG is essential in assembling the transcription machinery. Genes regulated by MYOD1 and MYOG include genes required for muscle fusion, myomaker and myomerger, and we show that myomaker is fully dependent on...
Skeletal muscle differentiation is initiated by the transcription factor MyoD, which binds directly ...
International audienceSkeletal muscle is a dynamic tissue the size of which can be remodeled through...
AbstractThe myogenic regulatory factors MyoD and myogenin are crucial for skeletal muscle developmen...
We used a combination of genome‐wide and promoter‐specific DNA binding and expression analyses to as...
The activation of muscle-specific gene expression requires the coordinated action of muscle regulato...
MyoD is a master regulator of the skeletal muscle gene expression program. ChIP-Seq analysis has rec...
MyoD1 is a key regulator that orchestrates skeletal muscle dif-ferentiation through the regulation o...
Myogenin is required not for the initiation of myogenesis but instead for skeletal muscle formation ...
Many studies have examined transcriptional regulation during the initiation of skeletal muscle diffe...
Skeletal muscle differentiation is initiated by the transcription factor MyoD, which binds directly ...
International audienceSkeletal muscle is a dynamic tissue the size of which can be remodeled through...
International audienceSkeletal muscle is a dynamic tissue the size of which can be remodeled through...
SummaryRecent studies have demonstrated that MyoD initiates a feed-forward regulation of skeletal mu...
Skeletal muscle differentiation is initiated by the transcription factor MyoD, which binds directly ...
BACKGROUND: Among the complexities of skeletal muscle differentiation is a temporal distinction in t...
Skeletal muscle differentiation is initiated by the transcription factor MyoD, which binds directly ...
International audienceSkeletal muscle is a dynamic tissue the size of which can be remodeled through...
AbstractThe myogenic regulatory factors MyoD and myogenin are crucial for skeletal muscle developmen...
We used a combination of genome‐wide and promoter‐specific DNA binding and expression analyses to as...
The activation of muscle-specific gene expression requires the coordinated action of muscle regulato...
MyoD is a master regulator of the skeletal muscle gene expression program. ChIP-Seq analysis has rec...
MyoD1 is a key regulator that orchestrates skeletal muscle dif-ferentiation through the regulation o...
Myogenin is required not for the initiation of myogenesis but instead for skeletal muscle formation ...
Many studies have examined transcriptional regulation during the initiation of skeletal muscle diffe...
Skeletal muscle differentiation is initiated by the transcription factor MyoD, which binds directly ...
International audienceSkeletal muscle is a dynamic tissue the size of which can be remodeled through...
International audienceSkeletal muscle is a dynamic tissue the size of which can be remodeled through...
SummaryRecent studies have demonstrated that MyoD initiates a feed-forward regulation of skeletal mu...
Skeletal muscle differentiation is initiated by the transcription factor MyoD, which binds directly ...
BACKGROUND: Among the complexities of skeletal muscle differentiation is a temporal distinction in t...
Skeletal muscle differentiation is initiated by the transcription factor MyoD, which binds directly ...
International audienceSkeletal muscle is a dynamic tissue the size of which can be remodeled through...
AbstractThe myogenic regulatory factors MyoD and myogenin are crucial for skeletal muscle developmen...