SummaryThe homeodomain transcription factor Nanog is a central part of the core pluripotency transcriptional network and plays a critical role in embryonic stem cell (ESC) self-renewal. Several reports have suggested that Nanog expression is allelically regulated and that transient downregulation of Nanog in a subset of pluripotent cells predisposes them toward differentiation. Using single-cell gene expression analyses combined with different reporters for the two alleles of Nanog, we show that Nanog is biallelically expressed in ESCs independently of culture condition. We also show that the overall variation in endogenous Nanog expression in ESCs is very similar to that of several other pluripotency markers. Our analysis suggests that rep...
International audienceTranscription factor networks, together with histone modifications and signall...
Mouse embryonic stem (ES) cells are derived from the pre-implantation blastocyst and are able to mai...
SummaryIt has been suggested that the transcription factor Nanog is essential for the establishment ...
The homeodomain transcription factor Nanog is a central part of the core pluripotency transcriptiona...
SummaryThe homeodomain transcription factor Nanog is a central part of the core pluripotency transcr...
AbstractEmbryonic stem (ES) cells undergo extended proliferation while remaining poised for multilin...
There is evidence that pluripotency of mouse embryonic stem (ES) cells is associated with the activi...
The pluripotent state in embryonic stem (ES) cells is controlled by a core network of transcription ...
The pluripotent state in embryonic stem (ES) cells is controlled by a core network of transcription ...
The pluripotent state in embryonic stem (ES) cells is controlled by a core network of transcription ...
AbstractEmbryonic stem (ES) cells undergo extended proliferation while remaining poised for multilin...
<div><p>Nanog is a principal pluripotency regulator exhibiting a disperse distribution within stem c...
The expression of the transcription factors Oct4, Sox2, and Nanog is commonly associated with plurip...
Nanog is a principal pluripotency regulator exhibiting a disperse distribution within stem cell popu...
Mouse embryonic stem (ES) cells are derived from the pre-implantation blastocyst and are able to mai...
International audienceTranscription factor networks, together with histone modifications and signall...
Mouse embryonic stem (ES) cells are derived from the pre-implantation blastocyst and are able to mai...
SummaryIt has been suggested that the transcription factor Nanog is essential for the establishment ...
The homeodomain transcription factor Nanog is a central part of the core pluripotency transcriptiona...
SummaryThe homeodomain transcription factor Nanog is a central part of the core pluripotency transcr...
AbstractEmbryonic stem (ES) cells undergo extended proliferation while remaining poised for multilin...
There is evidence that pluripotency of mouse embryonic stem (ES) cells is associated with the activi...
The pluripotent state in embryonic stem (ES) cells is controlled by a core network of transcription ...
The pluripotent state in embryonic stem (ES) cells is controlled by a core network of transcription ...
The pluripotent state in embryonic stem (ES) cells is controlled by a core network of transcription ...
AbstractEmbryonic stem (ES) cells undergo extended proliferation while remaining poised for multilin...
<div><p>Nanog is a principal pluripotency regulator exhibiting a disperse distribution within stem c...
The expression of the transcription factors Oct4, Sox2, and Nanog is commonly associated with plurip...
Nanog is a principal pluripotency regulator exhibiting a disperse distribution within stem cell popu...
Mouse embryonic stem (ES) cells are derived from the pre-implantation blastocyst and are able to mai...
International audienceTranscription factor networks, together with histone modifications and signall...
Mouse embryonic stem (ES) cells are derived from the pre-implantation blastocyst and are able to mai...
SummaryIt has been suggested that the transcription factor Nanog is essential for the establishment ...