SummaryThe transcriptional regulation of neuroectoderm (NE) specification is unknown. Here we show that Pax6 is uniformly expressed in early NE cells of human fetuses and those differentiated from human embryonic stem cells (hESCs). This is in contrast to the later expression of Pax6 in restricted mouse brain regions. Knockdown of Pax6 blocks NE specification from hESCs. Overexpression of either Pax6a or Pax6b, but not Pax6▵PD, triggers hESC differentiation. However, only Pax6a converts hESCs to NE. In contrast, neither loss nor gain of function of Pax6 affects mouse NE specification. Both Pax6a and Pax6b bind to pluripotent gene promoters but only Pax6a binds to NE genes during human NE specification. These findings indicate that Pax6 is a...
Appropriate neurogenesis and patterning of the forebrain requires the transcription factor Pax6, yet...
PAX6, a member of the paired-type homeobox gene family, is expressed in a partially and temporally r...
Different paired-box transcription factors control various aspects of cell fate during organ develop...
During brain embryogenesis, transcription factors drive stem cells towards neuronal fate. Here we sh...
Several transcription factors (TFs) have been implicated in neuroectoderm (NE) development, and rece...
Transcription factor Pax6 plays an important role in fate de-termination of neural progenitor cells ...
Transcription factor Pax6 plays an important role in fate de-termination of neural progenitor cells ...
International audienceSeveral transcription factors (TFs) have been implicated in neuroectoderm (NE)...
International audienceSeveral transcription factors (TFs) have been implicated in neuroectoderm (NE)...
International audienceSeveral transcription factors (TFs) have been implicated in neuroectoderm (NE)...
The development of the central nervous system relies on the tight regulation of the neural progenito...
Neural stem cell self-renewal, neurogenesis, and cell fate determination are processes that control ...
PAX6, a member of the paired-type homeobox gene family, is expressed in a partially and temporally r...
To achieve adequate organ development and size, cell proliferation and differentiation have to be ti...
Generation of the brain depends on proper regulation of progenitor proliferation and differentiation...
Appropriate neurogenesis and patterning of the forebrain requires the transcription factor Pax6, yet...
PAX6, a member of the paired-type homeobox gene family, is expressed in a partially and temporally r...
Different paired-box transcription factors control various aspects of cell fate during organ develop...
During brain embryogenesis, transcription factors drive stem cells towards neuronal fate. Here we sh...
Several transcription factors (TFs) have been implicated in neuroectoderm (NE) development, and rece...
Transcription factor Pax6 plays an important role in fate de-termination of neural progenitor cells ...
Transcription factor Pax6 plays an important role in fate de-termination of neural progenitor cells ...
International audienceSeveral transcription factors (TFs) have been implicated in neuroectoderm (NE)...
International audienceSeveral transcription factors (TFs) have been implicated in neuroectoderm (NE)...
International audienceSeveral transcription factors (TFs) have been implicated in neuroectoderm (NE)...
The development of the central nervous system relies on the tight regulation of the neural progenito...
Neural stem cell self-renewal, neurogenesis, and cell fate determination are processes that control ...
PAX6, a member of the paired-type homeobox gene family, is expressed in a partially and temporally r...
To achieve adequate organ development and size, cell proliferation and differentiation have to be ti...
Generation of the brain depends on proper regulation of progenitor proliferation and differentiation...
Appropriate neurogenesis and patterning of the forebrain requires the transcription factor Pax6, yet...
PAX6, a member of the paired-type homeobox gene family, is expressed in a partially and temporally r...
Different paired-box transcription factors control various aspects of cell fate during organ develop...