Skeletal muscle differentiation is triggered by a unique family of myogenic basic helix-loop-helix transcription factors, including MyoD, MRF-4, Myf-5, and Myogenin. These transcription factors bind promoters and distant regulatory regions, including E-box elements, of genes whose expression is restricted to muscle cells. Other E-box binding zinc finger proteins target the same DNA response elements, however, their function in muscle development and regeneration is still unknown. Here, we show that the transcription factor zinc finger E-box-binding homeobox 2 (Zeb2, Sip-1, Zfhx1b) is present in skeletal muscle tissues. We investigate the role of Zeb2 in skeletal muscle differentiation using genetic tools and transgenic mouse embryonic stem ...
The MyoD family of basic helix-loop-helix transcription factors function as heterodimers with member...
Zeb1 is a zinc finger transcription factor that plays a critical role in embryonic development, tis...
Epithelial-mesenchymal transitions (EMT) are genetic re-differentiation programs which generate moti...
Skeletal muscle differentiation is triggered by a unique family of myogenic basic helix-loop-helix t...
ZEB1 is a transcription factor best known for its role in cancer progression and metastasis. It is a...
The mechanisms linking muscle injury and regeneration are not fully understood. Here we report an un...
Skeletal muscle development is orchestrated by the myogenic regulatory factor MyoD, whose activity i...
International audienceSkeletal muscle growth and regeneration require a population of muscle stem ce...
Mammalian skeletal muscles are capable of regeneration after injury. Quiescent satellite cells are a...
Zeb1, a zinc finger E-box binding homeobox epithelial–mesenchymal (EMT) transcription factor, acts a...
In human embryonic stem cells (ESCs) the transcription factor Zeb2 regulates neuroectoderm versus me...
ZBED6, a key transcription factor, plays an important role in skeletal muscle and organ growth. ZBED...
ZT3, isolated from a murine muscle cell cDNA library by a low-stringency hybridization, encodes a zi...
Myogenic regeneration occurs through a chain of events beginning with the output of satellite cells ...
Skeletal muscle fibers form in overlapping, but distinct phases that depend on the generation of tem...
The MyoD family of basic helix-loop-helix transcription factors function as heterodimers with member...
Zeb1 is a zinc finger transcription factor that plays a critical role in embryonic development, tis...
Epithelial-mesenchymal transitions (EMT) are genetic re-differentiation programs which generate moti...
Skeletal muscle differentiation is triggered by a unique family of myogenic basic helix-loop-helix t...
ZEB1 is a transcription factor best known for its role in cancer progression and metastasis. It is a...
The mechanisms linking muscle injury and regeneration are not fully understood. Here we report an un...
Skeletal muscle development is orchestrated by the myogenic regulatory factor MyoD, whose activity i...
International audienceSkeletal muscle growth and regeneration require a population of muscle stem ce...
Mammalian skeletal muscles are capable of regeneration after injury. Quiescent satellite cells are a...
Zeb1, a zinc finger E-box binding homeobox epithelial–mesenchymal (EMT) transcription factor, acts a...
In human embryonic stem cells (ESCs) the transcription factor Zeb2 regulates neuroectoderm versus me...
ZBED6, a key transcription factor, plays an important role in skeletal muscle and organ growth. ZBED...
ZT3, isolated from a murine muscle cell cDNA library by a low-stringency hybridization, encodes a zi...
Myogenic regeneration occurs through a chain of events beginning with the output of satellite cells ...
Skeletal muscle fibers form in overlapping, but distinct phases that depend on the generation of tem...
The MyoD family of basic helix-loop-helix transcription factors function as heterodimers with member...
Zeb1 is a zinc finger transcription factor that plays a critical role in embryonic development, tis...
Epithelial-mesenchymal transitions (EMT) are genetic re-differentiation programs which generate moti...