AbstractAppropriate neural initiation of the pluripotent stem cells in the early embryos is critical for the development of the central nervous system. This process is regulated by the coordination of extrinsic signals and intrinsic programs. However, how the coordination is achieved to ensure proper neural fate commitment is largely unknown. Here, taking advantage of genome-wide ChIP-sequencing (ChIP-seq) and RNA-sequencing (RNA-seq) analyses, we demonstrate that the transcriptional factor Pou3f1 is an upstream activator of neural-promoting genes, and it is able to repress neural-inhibitory signals as well. Further studies revealed that Pou3f1 could directly bind neural lineage genes like Sox2 and downstream targets of neural inhibition si...
The transcription factor SOX3 is expressed within most neural progenitor (NP) cells of the vertebrat...
SOX2 is a master regulator of both pluripotent embryonic stem cells (ESCs) and multipotent neural pr...
Understanding the transcriptional regulation of pluripotent cells is of fundamental interest and wil...
AbstractAppropriate neural initiation of the pluripotent stem cells in the early embryos is critical...
The neural fate commitment of pluripotent stem cells requires the repression of extrinsic inhibitory...
The Sox2 transcription factor is expressed early in the stem cells of the blastocyst inner cell mass...
SummaryMuch attention has focused on a small set of transcription factors that maintain human or mou...
Spatiotemporal regulation of gene expression in multicellular organisms is mediated by cell-type spe...
AbstractPrimitive neural stem cells (NSCs) define an early stage of neural induction, thus provide a...
It has been known that three core transcription factors (TFs), NANOG, OCT4, and SOX2, collaborate to...
Lineage commitment of pluripotent cells is a critical step in the development of multicellular organ...
AbstractEpigenetic modification as an intrinsic fine-tune program cooperates with key transcription ...
SummaryTranscription factors (TFs) and their specific interactions with targets are crucial for spec...
AbstractNumerous transcription factors have been identified which have profound effects on developin...
SummaryStem cell fate is governed by the integration of intrinsic and extrinsic positive and negativ...
The transcription factor SOX3 is expressed within most neural progenitor (NP) cells of the vertebrat...
SOX2 is a master regulator of both pluripotent embryonic stem cells (ESCs) and multipotent neural pr...
Understanding the transcriptional regulation of pluripotent cells is of fundamental interest and wil...
AbstractAppropriate neural initiation of the pluripotent stem cells in the early embryos is critical...
The neural fate commitment of pluripotent stem cells requires the repression of extrinsic inhibitory...
The Sox2 transcription factor is expressed early in the stem cells of the blastocyst inner cell mass...
SummaryMuch attention has focused on a small set of transcription factors that maintain human or mou...
Spatiotemporal regulation of gene expression in multicellular organisms is mediated by cell-type spe...
AbstractPrimitive neural stem cells (NSCs) define an early stage of neural induction, thus provide a...
It has been known that three core transcription factors (TFs), NANOG, OCT4, and SOX2, collaborate to...
Lineage commitment of pluripotent cells is a critical step in the development of multicellular organ...
AbstractEpigenetic modification as an intrinsic fine-tune program cooperates with key transcription ...
SummaryTranscription factors (TFs) and their specific interactions with targets are crucial for spec...
AbstractNumerous transcription factors have been identified which have profound effects on developin...
SummaryStem cell fate is governed by the integration of intrinsic and extrinsic positive and negativ...
The transcription factor SOX3 is expressed within most neural progenitor (NP) cells of the vertebrat...
SOX2 is a master regulator of both pluripotent embryonic stem cells (ESCs) and multipotent neural pr...
Understanding the transcriptional regulation of pluripotent cells is of fundamental interest and wil...