The expression of the myogenic regulatory factors (MRFs), Myf5, MyoD, myogenin (Mgn) and MRF4 have been analysed during the development of chicken embryo somites and limbs. In somites, Myf5 is expressed first in somites and paraxial mesoderm at HH stage 9 followed by MyoD at HH stage 12, and Mgn and MRF4 at HH stage 14. In older somites, Myf5 and MyoD are also expressed in the ventrally extending myotome prior to Mgn and MRF4 expression. In limb muscles a similar temporal sequence is observed with Myf5 expression detected first in forelimbs at HH stage 22, MyoD at HH stage 23, Mgn at HH stage 24 and MRF4 at HH stage 30. This report describes the precise time of onset of expression of each MRF in somites and limbs during chicken embryo devel...
Motivation: Myogenesis is a complex process controlled by different networks, depending on the origi...
AbstractLimb muscles of vertebrates are derived from precursor cells that migrate from the lateral e...
Important advances have been made in understanding the genetic processes that control skeletal muscl...
The expression of the myogenic regulatory factors (MRFs), Myf5, MyoD, myogenin (Mgn) and MRF4 have b...
AbstractMyf-5 is one of four myogenic regulatory factors that play important roles in skeletal muscl...
In situ hybridization has provided insights into the molecular basis of skeletal myogenesis during e...
AbstractThis study examines the time of appearance of myogenic determination factor (MDF) transcript...
In this study, we have isolated and characterized the chicken Myf5 gene, and cDNA clones encoding ch...
The Myogenic Regulatory Factor family (MRFs) is a family of transcription factors that plays a key r...
AbstractMyostatin is a potent inhibitor of muscle growth. Genetic deletion of Myostatin leads to mas...
Myostatin is a potent inhibitor of muscle growth. Genetic deletion of Myostatin leads to massive hyp...
International audienceThe myogenic basic helix-loop-helix (bHLH) transcription factors, Myf5, MyoD, ...
In vertebrates, muscle precursor cells delaminate and migrate from the somites into the limb, where ...
AbstractSkeletal muscle development in the vertebrate embryo critically depends on the myogenic regu...
Skeletal muscle development in the vertebrate embryo critically depends on bHLH myogenic regulatory ...
Motivation: Myogenesis is a complex process controlled by different networks, depending on the origi...
AbstractLimb muscles of vertebrates are derived from precursor cells that migrate from the lateral e...
Important advances have been made in understanding the genetic processes that control skeletal muscl...
The expression of the myogenic regulatory factors (MRFs), Myf5, MyoD, myogenin (Mgn) and MRF4 have b...
AbstractMyf-5 is one of four myogenic regulatory factors that play important roles in skeletal muscl...
In situ hybridization has provided insights into the molecular basis of skeletal myogenesis during e...
AbstractThis study examines the time of appearance of myogenic determination factor (MDF) transcript...
In this study, we have isolated and characterized the chicken Myf5 gene, and cDNA clones encoding ch...
The Myogenic Regulatory Factor family (MRFs) is a family of transcription factors that plays a key r...
AbstractMyostatin is a potent inhibitor of muscle growth. Genetic deletion of Myostatin leads to mas...
Myostatin is a potent inhibitor of muscle growth. Genetic deletion of Myostatin leads to massive hyp...
International audienceThe myogenic basic helix-loop-helix (bHLH) transcription factors, Myf5, MyoD, ...
In vertebrates, muscle precursor cells delaminate and migrate from the somites into the limb, where ...
AbstractSkeletal muscle development in the vertebrate embryo critically depends on the myogenic regu...
Skeletal muscle development in the vertebrate embryo critically depends on bHLH myogenic regulatory ...
Motivation: Myogenesis is a complex process controlled by different networks, depending on the origi...
AbstractLimb muscles of vertebrates are derived from precursor cells that migrate from the lateral e...
Important advances have been made in understanding the genetic processes that control skeletal muscl...