In mammalian embryonic stem cells, the acquisition of pluripotency is dependent on Nanog, but the in vivo analysis of Nanog has been hampered by its requirement for early mouse development. In an effort to examine the role of Nanog in vivo, we identified a zebrafish Nanog ortholog and found that its knockdown impaired endoderm formation. Genome-wide transcription analysis revealed that nanog-like morphants fail to develop the extraembryonic yolk syncytial layer (YSL), which produces Nodal, required for endoderm induction. We examined the genes that were regulated by Nanog-like and identified the homeobox gene mxtx2, which is both necessary and sufficient for YSL induction. Chromatin immunoprecipitation assays and genetic studies indicated t...
Progenitors of the first hematopoietic cells in the mouse arise in the early embryo from Brachyury-p...
The formation of the vertebrate body plan begins with the segregation of undifferentiated mass of ce...
AbstractIn zebrafish development, Nodal signaling is critical for the induction of endoderm and meso...
SummaryIn mammalian embryonic stem cells, the acquisition of pluripotency is dependent on Nanog, but...
In mammalian embryonic stem cells, the acquisition of pluripotency is dependent on Nanog, but the in...
In mammalian embryonic stem cells, the acquisition of pluripotency is dependent on Nanog, but the in...
SummaryIn mammalian embryonic stem cells, the acquisition of pluripotency is dependent on Nanog, but...
In mammalian embryonic stem cells, the acquisition of pluripotency is dependent on Nanog, but the in...
AbstractEarly lineage segregation in mouse development results in two, either CDX2- or OCT4/NANOG-po...
AbstractEarly lineage segregation in mouse development results in two, either CDX2- or OCT4/NANOG-po...
Early lineage segregation in mouse development results in two, either CDX2- or OCT4/NANOG-positive, ...
SummaryDuring preimplantation mouse development, the inner cell mass (ICM) differentiates into two c...
AbstractNanog, a core pluripotency factor, is required for stabilizing pluripotency of inner cell ma...
Early lineage segregation in mouse development results in two, either CDX2- or OCT4/NANOG-positive, ...
Nanog is a homeodomain transcription factor that is essential for maintenance of pluripotency and se...
Progenitors of the first hematopoietic cells in the mouse arise in the early embryo from Brachyury-p...
The formation of the vertebrate body plan begins with the segregation of undifferentiated mass of ce...
AbstractIn zebrafish development, Nodal signaling is critical for the induction of endoderm and meso...
SummaryIn mammalian embryonic stem cells, the acquisition of pluripotency is dependent on Nanog, but...
In mammalian embryonic stem cells, the acquisition of pluripotency is dependent on Nanog, but the in...
In mammalian embryonic stem cells, the acquisition of pluripotency is dependent on Nanog, but the in...
SummaryIn mammalian embryonic stem cells, the acquisition of pluripotency is dependent on Nanog, but...
In mammalian embryonic stem cells, the acquisition of pluripotency is dependent on Nanog, but the in...
AbstractEarly lineage segregation in mouse development results in two, either CDX2- or OCT4/NANOG-po...
AbstractEarly lineage segregation in mouse development results in two, either CDX2- or OCT4/NANOG-po...
Early lineage segregation in mouse development results in two, either CDX2- or OCT4/NANOG-positive, ...
SummaryDuring preimplantation mouse development, the inner cell mass (ICM) differentiates into two c...
AbstractNanog, a core pluripotency factor, is required for stabilizing pluripotency of inner cell ma...
Early lineage segregation in mouse development results in two, either CDX2- or OCT4/NANOG-positive, ...
Nanog is a homeodomain transcription factor that is essential for maintenance of pluripotency and se...
Progenitors of the first hematopoietic cells in the mouse arise in the early embryo from Brachyury-p...
The formation of the vertebrate body plan begins with the segregation of undifferentiated mass of ce...
AbstractIn zebrafish development, Nodal signaling is critical for the induction of endoderm and meso...