Myogenin is the dominant transcriptional regulator of embryonic and fetal muscle differentiation and during maturation is profoundly down-regulated. We show that a highly conserved 17-bp DNA cis-acting sequence element located upstream of the myogenin promoter (myogHCE) is essential for postnatal repression of myogenin in transgenic animals. We present multiple lines of evidence supporting the idea that repression is mediated by the Y-box protein MSY-3. Electroporation in vivo shows that myogHCE and MSY-3 are required for postnatal repression. We further show that, in the C2C12 cell culture system, ectopic MSY-3 can repress differentiation, while reduced MSY-3 promotes premature differentiation. MSY-3 binds myogHCE simultaneously with the h...
We discuss the upstream regulators of myogenesis that lead to the activation of myogenic determinati...
The formation of skeletal muscle during vertebrate development involves the induction of mesoderm an...
In vertebrate development, a prominent feature of several cell lineages is the coupling of cell cycl...
Myogenin is the dominant transcriptional regulator of embryonic and fetal muscle differentiation and...
Myogenin is the dominant transcriptional regulator of embryonic and fetal muscle differentiation and...
Myogenin is the dominant transcriptional regulator of embryonic and fetal muscle differentiation and...
BACKGROUND: The Y-box protein MSY3/Csda represses myogenin transcription in skeletal muscle by bind...
Background: The Y-box protein MSY3/Csda represses myogenin transcription in skeletal muscle by bindi...
AbstractIn contrast to the detailed understanding we have for the regulation of skeletal muscle gene...
AbstractMyogenin (a member of the myogenic basic helixloop-helix transcription factor family) seems ...
The Y‐box protein MSY‐3/Csda regulates postnatal repression of the myogenic transcripSon factor myog...
The formation of skeletal muscle during vertebrate development involves the induction of mesoderm an...
Although mechanisms regulating the formation of embryonic skeletal muscle are well characterized, le...
BACKGROUND: Among the complexities of skeletal muscle differentiation is a temporal distinction in t...
Certain higher vertebrates developed the ability to reverse muscle cell differentiation (dedifferent...
We discuss the upstream regulators of myogenesis that lead to the activation of myogenic determinati...
The formation of skeletal muscle during vertebrate development involves the induction of mesoderm an...
In vertebrate development, a prominent feature of several cell lineages is the coupling of cell cycl...
Myogenin is the dominant transcriptional regulator of embryonic and fetal muscle differentiation and...
Myogenin is the dominant transcriptional regulator of embryonic and fetal muscle differentiation and...
Myogenin is the dominant transcriptional regulator of embryonic and fetal muscle differentiation and...
BACKGROUND: The Y-box protein MSY3/Csda represses myogenin transcription in skeletal muscle by bind...
Background: The Y-box protein MSY3/Csda represses myogenin transcription in skeletal muscle by bindi...
AbstractIn contrast to the detailed understanding we have for the regulation of skeletal muscle gene...
AbstractMyogenin (a member of the myogenic basic helixloop-helix transcription factor family) seems ...
The Y‐box protein MSY‐3/Csda regulates postnatal repression of the myogenic transcripSon factor myog...
The formation of skeletal muscle during vertebrate development involves the induction of mesoderm an...
Although mechanisms regulating the formation of embryonic skeletal muscle are well characterized, le...
BACKGROUND: Among the complexities of skeletal muscle differentiation is a temporal distinction in t...
Certain higher vertebrates developed the ability to reverse muscle cell differentiation (dedifferent...
We discuss the upstream regulators of myogenesis that lead to the activation of myogenic determinati...
The formation of skeletal muscle during vertebrate development involves the induction of mesoderm an...
In vertebrate development, a prominent feature of several cell lineages is the coupling of cell cycl...