Terminally differentiated cells can be reprogrammed to pluripotency by the forced expression of Oct4, Sox2, Klf4 and c-Myc. However, it remains unknown how this leads to the multitude of epigenetic changes observed during the reprogramming process. Interestingly, Oct4 is the only factor that cannot be replaced by other members of the same family to induce pluripotency. To understand the unique role of Oct4 in reprogramming, we determined the structure of its POU domain bound to DNA. We show that the linker between the two DNA-binding domains is structured as an α-helix and exposed to the protein's surface, in contrast to the unstructured linker of Oct1. Point mutations in this α-helix alter or abolish the reprogramming activity of Oct4, but...
The transcription factor Oct4 plays a central role in controlling the undifferentiated state of embr...
Resetting differentiated cells to a pluripotent state is now a widely applied technology and a key s...
Pluripotency factors Oct4, Sox2, and Nanog orchestrate an elaborate hierarchy of gene regulation gov...
Terminally differentiated cells can be reprogrammed to pluripotency by the forced expression of Oct4...
SummaryThe core pluripotency factor Oct4 plays key roles in somatic cell reprogramming through trans...
The POU family transcription factor Oct4 plays piv-otal roles in regulating pluripotency and somatic...
OCT4 (also known as POU5F1) plays an essential role in reprogramming. It is the only member of the P...
Summary: The protein level of OCT4, a core pluripotency transcription factor, is vital for embryonic...
The core pluripotency factor Oct4 plays key roles in somatic cell reprogramming through transcriptio...
Oct4 is a key component of the molecular circuitry which regulates embryonic stem cell proliferation...
� 2016 The Authors. Published under the terms of the CC BY 4.0 license The transcription factor Oc...
Very few proteins are capable to induce pluripotent stem (iPS) cells and their biochemical uniquenes...
SummaryThe transcription factor Oct4 is key in embryonic stem cell identity and reprogramming. Insig...
In pluripotent cells, OCT4 associates with SOX2 to maintain pluripotency or with SOX17 to induce pri...
SummaryIn pluripotent cells, OCT4 associates with SOX2 to maintain pluripotency or with SOX17 to ind...
The transcription factor Oct4 plays a central role in controlling the undifferentiated state of embr...
Resetting differentiated cells to a pluripotent state is now a widely applied technology and a key s...
Pluripotency factors Oct4, Sox2, and Nanog orchestrate an elaborate hierarchy of gene regulation gov...
Terminally differentiated cells can be reprogrammed to pluripotency by the forced expression of Oct4...
SummaryThe core pluripotency factor Oct4 plays key roles in somatic cell reprogramming through trans...
The POU family transcription factor Oct4 plays piv-otal roles in regulating pluripotency and somatic...
OCT4 (also known as POU5F1) plays an essential role in reprogramming. It is the only member of the P...
Summary: The protein level of OCT4, a core pluripotency transcription factor, is vital for embryonic...
The core pluripotency factor Oct4 plays key roles in somatic cell reprogramming through transcriptio...
Oct4 is a key component of the molecular circuitry which regulates embryonic stem cell proliferation...
� 2016 The Authors. Published under the terms of the CC BY 4.0 license The transcription factor Oc...
Very few proteins are capable to induce pluripotent stem (iPS) cells and their biochemical uniquenes...
SummaryThe transcription factor Oct4 is key in embryonic stem cell identity and reprogramming. Insig...
In pluripotent cells, OCT4 associates with SOX2 to maintain pluripotency or with SOX17 to induce pri...
SummaryIn pluripotent cells, OCT4 associates with SOX2 to maintain pluripotency or with SOX17 to ind...
The transcription factor Oct4 plays a central role in controlling the undifferentiated state of embr...
Resetting differentiated cells to a pluripotent state is now a widely applied technology and a key s...
Pluripotency factors Oct4, Sox2, and Nanog orchestrate an elaborate hierarchy of gene regulation gov...