Pax3 and Pax7 are closely related transcription factors involved in the commitment of myogenic precursors in the developing trunk. However, it is not yet clear whether these genes are required for myogenic cell specification in the head and for post-somitic myogensis per se. In part, this uncertainty is due to the scarce information about their normal time course and pattern of expression. Here, we present a systematic immunohistochemical in situ analysis of spatiotemporal characteristics of Pax3 and Pax7 protein expression in comparison to that of MyoD and myogenin in the developing trunk and head muscles. The observed patterns of expression suggest that Pax3 is not involved in myogenesis in the head and its post-somitic expression in the ...
Pax3 and Pax7 regulate stem cell function in skeletal myogenesis. However, molecular insight into th...
SummaryPax3 and Pax7 regulate stem cell function in skeletal myogenesis. However, molecular insight ...
BACKGROUND: Pax3 is a key upstream regulator of the onset of myogenesis, controlling progenitor cell...
Pax3 and Pax7 are closely related transcription factors involved in the commitment of myogenic precu...
The development and regeneration of skeletal muscle is fuelled by muscle stem/progenitor cell biogen...
The development and regeneration of skeletal muscle is fuelled by muscle stem/progenitor cell biogen...
The development and regeneration of skeletal muscle is fuelled by muscle stem/progenitor cell biogen...
The development and regeneration of skeletal muscle is fuelled by muscle stem/progenitor cell biogen...
The development and regeneration of skeletal muscle is fuelled by muscle stem/progenitor cell biogen...
Pax3 is an essential myogenic regulator of fetal and embryonic development, but its role in postnata...
During vertebrate development, successive phases of embryonic and fetal myogenesis lead to the forma...
Paired box (Pax) proteins 3 and 7 are key determinants for embryonic skeletal muscle development by ...
Paired box (Pax) proteins 3 and 7 are key determinants for embryonic skeletal muscle development by ...
Paired box (Pax) proteins 3 and 7 are key determinants for embryonic skeletal muscle development by ...
Pax3 and Pax7 regulate stem cell function in skeletal myogenesis. However, molecular insight into th...
Pax3 and Pax7 regulate stem cell function in skeletal myogenesis. However, molecular insight into th...
SummaryPax3 and Pax7 regulate stem cell function in skeletal myogenesis. However, molecular insight ...
BACKGROUND: Pax3 is a key upstream regulator of the onset of myogenesis, controlling progenitor cell...
Pax3 and Pax7 are closely related transcription factors involved in the commitment of myogenic precu...
The development and regeneration of skeletal muscle is fuelled by muscle stem/progenitor cell biogen...
The development and regeneration of skeletal muscle is fuelled by muscle stem/progenitor cell biogen...
The development and regeneration of skeletal muscle is fuelled by muscle stem/progenitor cell biogen...
The development and regeneration of skeletal muscle is fuelled by muscle stem/progenitor cell biogen...
The development and regeneration of skeletal muscle is fuelled by muscle stem/progenitor cell biogen...
Pax3 is an essential myogenic regulator of fetal and embryonic development, but its role in postnata...
During vertebrate development, successive phases of embryonic and fetal myogenesis lead to the forma...
Paired box (Pax) proteins 3 and 7 are key determinants for embryonic skeletal muscle development by ...
Paired box (Pax) proteins 3 and 7 are key determinants for embryonic skeletal muscle development by ...
Paired box (Pax) proteins 3 and 7 are key determinants for embryonic skeletal muscle development by ...
Pax3 and Pax7 regulate stem cell function in skeletal myogenesis. However, molecular insight into th...
Pax3 and Pax7 regulate stem cell function in skeletal myogenesis. However, molecular insight into th...
SummaryPax3 and Pax7 regulate stem cell function in skeletal myogenesis. However, molecular insight ...
BACKGROUND: Pax3 is a key upstream regulator of the onset of myogenesis, controlling progenitor cell...