We discuss the upstream regulators of myogenesis that lead to the activation of myogenic determination genes and subsequent differentiation, focusing on the mouse model. Key upstream genes, such as Pax3 and Pax7, Six1 and Six4, or Pitx2, participate in gene regulatory networks at different sites of skeletal muscle formation. MicroRNAs also intervene, with emerging evidence for the role of other noncoding RNAs. Myogenic determination and subsequent differentiation depend on members of the MyoD family. We discuss new insights into mechanisms underlying the transcriptional activity of these factors
AbstractThe steps that commit multipotential somite cells to muscle differentiation are being elucid...
SummaryGenetic regulatory networks governing skeletal myogenesis in the body are well understood, ye...
BACKGROUND: Among the complexities of skeletal muscle differentiation is a temporal distinction in t...
We discuss the upstream regulators of myogenesis that lead to the activation of myogenic determinati...
The transcriptional regulatory network that controls the determination and differentiation of skelet...
The formation of skeletal muscle during vertebrate development involves the induction of mesoderm an...
Abstract In vertebrates, the skeletal muscles of the body and their associated stem cells originate ...
The formation of skeletal muscle during vertebrate development involves the induction of mesoderm an...
During embryonic development the integration of numerous synergistic signalling pathways turns a sin...
International audienceAbstract In vertebrates, the skeletal muscles of the body and their associated...
AbstractWe analyzed Pax-3 (splotch)Myf-5 (targeted with nlacZ), and splotch/Myf-5 homozygous mutant ...
Precise regulation of gene expression is crucial to myogenesis and is thought to require the coopera...
International audienceAbstract In vertebrates, the skeletal muscles of the body and their associated...
International audienceAbstract In vertebrates, the skeletal muscles of the body and their associated...
International audienceAbstract In vertebrates, the skeletal muscles of the body and their associated...
AbstractThe steps that commit multipotential somite cells to muscle differentiation are being elucid...
SummaryGenetic regulatory networks governing skeletal myogenesis in the body are well understood, ye...
BACKGROUND: Among the complexities of skeletal muscle differentiation is a temporal distinction in t...
We discuss the upstream regulators of myogenesis that lead to the activation of myogenic determinati...
The transcriptional regulatory network that controls the determination and differentiation of skelet...
The formation of skeletal muscle during vertebrate development involves the induction of mesoderm an...
Abstract In vertebrates, the skeletal muscles of the body and their associated stem cells originate ...
The formation of skeletal muscle during vertebrate development involves the induction of mesoderm an...
During embryonic development the integration of numerous synergistic signalling pathways turns a sin...
International audienceAbstract In vertebrates, the skeletal muscles of the body and their associated...
AbstractWe analyzed Pax-3 (splotch)Myf-5 (targeted with nlacZ), and splotch/Myf-5 homozygous mutant ...
Precise regulation of gene expression is crucial to myogenesis and is thought to require the coopera...
International audienceAbstract In vertebrates, the skeletal muscles of the body and their associated...
International audienceAbstract In vertebrates, the skeletal muscles of the body and their associated...
International audienceAbstract In vertebrates, the skeletal muscles of the body and their associated...
AbstractThe steps that commit multipotential somite cells to muscle differentiation are being elucid...
SummaryGenetic regulatory networks governing skeletal myogenesis in the body are well understood, ye...
BACKGROUND: Among the complexities of skeletal muscle differentiation is a temporal distinction in t...