SummaryNaive and primed pluripotency is characterized by distinct signaling requirements, transcriptomes, and developmental properties, but both cellular states share key transcriptional regulators: Oct4, Sox2, and Nanog. Here, we demonstrate that transition between these two pluripotent states is associated with widespread Oct4 relocalization, mirrored by global rearrangement of enhancer chromatin landscapes. Our genomic and biochemical analyses identified candidate mediators of primed state-specific Oct4 binding, including Otx2 and Zic2/3. Even when differentiation cues are blocked, premature Otx2 overexpression is sufficient to exit the naive state, induce transcription of a substantial subset of primed pluripotency-associated genes, and...
SummaryNaive and primed pluripotent stem cells (PSCs) and germ cells express the Oct4 gene. The Oct4...
SummaryThe relationship between chromatin organization and transcriptional regulation is an area of ...
The enhancer landscape is dramatically restructured as naive preimplantation epiblasts transition to...
SummaryNaive and primed pluripotency is characterized by distinct signaling requirements, transcript...
SummaryEmbryonic stem cells (ESCs) are unique in that they have the capacity to differentiate into a...
Pluripotent stem cells transition between distinct naive and primed states that are controlled by ov...
SummaryThe core pluripotency factor Oct4 plays key roles in somatic cell reprogramming through trans...
Embryonic stem cells (ESCs) are unique in that they have the capacity to differentiate into all of t...
The transition from naive to primed pluripotency is accompanied by an extensive reorganisation of tr...
The transcription factor (TF) Oct4 is essential for maintaining pluripotency in vitro as well as in ...
Mouse embryonic stem cells (ESCs) and the inner cell mass (ICM)-derived epiblast exhibit naive pluri...
Pluripotency factors Oct4, Sox2, and Nanog orchestrate an elaborate hierarchy of gene regulation gov...
The core pluripotency factor Oct4 plays key roles in somatic cell reprogramming through transcriptio...
The transcription factor Oct4 is essential for the maintenance and induction of stem cell pluripoten...
SummaryMouse embryonic stem cells (ESCs) and the inner cell mass (ICM)-derived epiblast exhibit naiv...
SummaryNaive and primed pluripotent stem cells (PSCs) and germ cells express the Oct4 gene. The Oct4...
SummaryThe relationship between chromatin organization and transcriptional regulation is an area of ...
The enhancer landscape is dramatically restructured as naive preimplantation epiblasts transition to...
SummaryNaive and primed pluripotency is characterized by distinct signaling requirements, transcript...
SummaryEmbryonic stem cells (ESCs) are unique in that they have the capacity to differentiate into a...
Pluripotent stem cells transition between distinct naive and primed states that are controlled by ov...
SummaryThe core pluripotency factor Oct4 plays key roles in somatic cell reprogramming through trans...
Embryonic stem cells (ESCs) are unique in that they have the capacity to differentiate into all of t...
The transition from naive to primed pluripotency is accompanied by an extensive reorganisation of tr...
The transcription factor (TF) Oct4 is essential for maintaining pluripotency in vitro as well as in ...
Mouse embryonic stem cells (ESCs) and the inner cell mass (ICM)-derived epiblast exhibit naive pluri...
Pluripotency factors Oct4, Sox2, and Nanog orchestrate an elaborate hierarchy of gene regulation gov...
The core pluripotency factor Oct4 plays key roles in somatic cell reprogramming through transcriptio...
The transcription factor Oct4 is essential for the maintenance and induction of stem cell pluripoten...
SummaryMouse embryonic stem cells (ESCs) and the inner cell mass (ICM)-derived epiblast exhibit naiv...
SummaryNaive and primed pluripotent stem cells (PSCs) and germ cells express the Oct4 gene. The Oct4...
SummaryThe relationship between chromatin organization and transcriptional regulation is an area of ...
The enhancer landscape is dramatically restructured as naive preimplantation epiblasts transition to...