Pax3 is an essential myogenic regulator of fetal and embryonic development, but its role in postnatal myogenesis remains a topic of debate. We show that constitutive expression of Pax3 in postnatal, juvenile mouse skeletal muscle stem cells, a subset of the heterogeneous satellite cell pool highly enriched for myogenic activity, potently induces differentiation. This differentiation-promoting activity stands in contrast to the differentiation-inhibiting effects of Pax3 in the commonly used mouse myoblast cell line C2C12. Pax3 mRNA levels in distinct muscles correlate with the rate of myogenic differentiation of their muscle stem cells. Although Pax3 controls embryonic myogenesis through regulation of the canonical myogenic regulatory factor...
Pax3/7-dependent stem cells play an essential role in skeletal muscle development. We now show that ...
Pax3/7-dependent stem cells play an essential role in skeletal muscle development. We now show that ...
Paired box (Pax) proteins 3 and 7 are key determinants for embryonic skeletal muscle development by ...
The paired-box transcription factor 3 (Pax3), is a powerful myogenic regulatory factor during embryo...
Mesenchymal stem cells (MSCs) residing within the bone marrow (BM) differentiate into multiple linea...
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...
During vertebrate development, successive phases of embryonic and fetal myogenesis lead to the forma...
Pax3 and Pax7 are closely related transcription factors involved in the commitment of myogenic precu...
Pax3 and Pax7 are closely related transcription factors involved in the commitment of myogenic precu...
Mesoangioblasts have been characterized as a population of vessel-associated stem cells able to diff...
Paired box (Pax) proteins 3 and 7 are key determinants for embryonic skeletal muscle development by ...
Pax3/7-dependent stem cells play an essential role in skeletal muscle development. We now show that ...
Pax3/7-dependent stem cells play an essential role in skeletal muscle development. We now show that ...
Paired box (Pax) proteins 3 and 7 are key determinants for embryonic skeletal muscle development by ...
The paired-box transcription factor 3 (Pax3), is a powerful myogenic regulatory factor during embryo...
Mesenchymal stem cells (MSCs) residing within the bone marrow (BM) differentiate into multiple linea...
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...
During vertebrate development, successive phases of embryonic and fetal myogenesis lead to the forma...
Pax3 and Pax7 are closely related transcription factors involved in the commitment of myogenic precu...
Pax3 and Pax7 are closely related transcription factors involved in the commitment of myogenic precu...
Mesoangioblasts have been characterized as a population of vessel-associated stem cells able to diff...
Paired box (Pax) proteins 3 and 7 are key determinants for embryonic skeletal muscle development by ...
Pax3/7-dependent stem cells play an essential role in skeletal muscle development. We now show that ...
Pax3/7-dependent stem cells play an essential role in skeletal muscle development. We now show that ...
Paired box (Pax) proteins 3 and 7 are key determinants for embryonic skeletal muscle development by ...