Nanog is a homeodomain transcription factor that is essential for maintenance of pluripotency and self renewal of embryonic stem cells (ESCs). In the present study, we demonstrate that zebrafish Nanog (zNanog) directly binds to the promoter region of zebrafish nIkl (znIkl) by ChIP-Seq analysis and that it up-regulates the expression of znIkl in fibroblast-like embryonic cells of Danio rerio (ZEM-2S cells) and in zebrafish embryos at 30% epiboly both at the mRNA and protein levels. In addition, compared with control (MO-C) embryos at 30% epiboly, the mRNA and protein expression of vasa and the numbers of vasa-positive cells were increased in embryos injected with zNanog morpholino (MO-zNanog). Further, injection of znIk1 mRNA into zNanog-dep...
Pluripotency and self-renewal of human embryonic stem cells (hESCs) is mediated by a complex interpl...
Background: NANOG is a homeodomain-containing transcription factor which forms one of the hubs in th...
Nanog, Sox2, and Oct4 are key transcription factors critical for the pluripotency and self-renewal o...
Nanog is a homeodomain transcription factor that is essential for maintenance of pluripotency and se...
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...
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...
SummaryIn mammalian embryonic stem cells, the acquisition of pluripotency is dependent on Nanog, but...
Maternal β-catenin activity is essential and critical for dorsal induction and its dorsal activation...
Pluripotency is regulated by a network of transcription factors that maintain early embryonic cells ...
Pluripotency is regulated by a network of transcription factors that maintain early embryonic cells ...
The presence of primordial germ cells (PGCs) is crucial for proper gonad formation in zebrafish (Dan...
BACKGROUND: Pluripotency and self-renewal of human embryonic stem cells (hESCs) is mediated by a com...
Pluripotency and self-renewal of human embryonic stem cells (hESCs) is mediated by a complex interpl...
Background: NANOG is a homeodomain-containing transcription factor which forms one of the hubs in th...
Nanog, Sox2, and Oct4 are key transcription factors critical for the pluripotency and self-renewal o...
Nanog is a homeodomain transcription factor that is essential for maintenance of pluripotency and se...
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...
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...
SummaryIn mammalian embryonic stem cells, the acquisition of pluripotency is dependent on Nanog, but...
Maternal β-catenin activity is essential and critical for dorsal induction and its dorsal activation...
Pluripotency is regulated by a network of transcription factors that maintain early embryonic cells ...
Pluripotency is regulated by a network of transcription factors that maintain early embryonic cells ...
The presence of primordial germ cells (PGCs) is crucial for proper gonad formation in zebrafish (Dan...
BACKGROUND: Pluripotency and self-renewal of human embryonic stem cells (hESCs) is mediated by a com...
Pluripotency and self-renewal of human embryonic stem cells (hESCs) is mediated by a complex interpl...
Background: NANOG is a homeodomain-containing transcription factor which forms one of the hubs in th...
Nanog, Sox2, and Oct4 are key transcription factors critical for the pluripotency and self-renewal o...