International audienceAbstract In vertebrates, the skeletal muscles of the body and their associated stem cells originate from muscle progenitor cells, during development. The specification of the muscles of the trunk, head and limbs, relies on the activity of distinct genetic hierarchies. The major regulators of trunk and limb muscle specification are the paired-homeobox transcription factors PAX3 and PAX7. Distinct gene regulatory networks drive the formation of the different muscles of the head. Despite the redeployment of diverse upstream regulators of muscle progenitor differentiation, the commitment towards the myogenic fate requires the expression of the early myogenic regulatory factors MYF5, MRF4, MYOD and the late differentiation ...
Following cues from mouse embryogenesis, Chal et al. (2015) identified key regulators of skeletal my...
Skeletal muscle is a highly specialized tissue composed of postmitotic, multinucleated muscle fibers...
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...
Abstract In vertebrates, the skeletal muscles of the body and their associated stem cells originate ...
The development and differentiation of vertebrate skeletal muscle provide an important paradigm to u...
International audienceDuring embryogenesis, skeletal muscle forms in the vertebrate limb from progen...
The final steps of vertebrate skeletal muscle development involve withdrawal of determined muscle pr...
During embryonic development the integration of numerous synergistic signalling pathways turns a sin...
During vertebrate development, successive phases of embryonic and fetal myogenesis lead to the forma...
We discuss the upstream regulators of myogenesis that lead to the activation of myogenic determinati...
SummaryGenetic regulatory networks governing skeletal myogenesis in the body are well understood, ye...
The transcriptional regulatory network that controls the determination and differentiation of skelet...
Following cues from mouse embryogenesis, Chal et al. (2015) identified key regulators of skeletal my...
Skeletal muscle is a highly specialized tissue composed of postmitotic, multinucleated muscle fibers...
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...
Abstract In vertebrates, the skeletal muscles of the body and their associated stem cells originate ...
The development and differentiation of vertebrate skeletal muscle provide an important paradigm to u...
International audienceDuring embryogenesis, skeletal muscle forms in the vertebrate limb from progen...
The final steps of vertebrate skeletal muscle development involve withdrawal of determined muscle pr...
During embryonic development the integration of numerous synergistic signalling pathways turns a sin...
During vertebrate development, successive phases of embryonic and fetal myogenesis lead to the forma...
We discuss the upstream regulators of myogenesis that lead to the activation of myogenic determinati...
SummaryGenetic regulatory networks governing skeletal myogenesis in the body are well understood, ye...
The transcriptional regulatory network that controls the determination and differentiation of skelet...
Following cues from mouse embryogenesis, Chal et al. (2015) identified key regulators of skeletal my...
Skeletal muscle is a highly specialized tissue composed of postmitotic, multinucleated muscle fibers...
Precise regulation of gene expression is crucial to myogenesis and is thought to require the coopera...