The pluripotent state in embryonic stem (ES) cells is controlled by a core network of transcription factors that includes Nanog, Oct4 and Sox2. Nanog is required to reach pluripotency during somatic reprogramming and is the only core factor whose overexpression is able to oppose differentiation-promoting signals. Additionally, Nanog expression is known to fluctuate in ES cells, and different levels of Nanog seem to correlate with ES cells' ability to respond to differentiation promoting signals. Elucidating how dynamic Nanog levels are regulated in pluripotent cells and modulate their potential is therefore critical to develop a better understanding of the pluripotent state.We describe the generation and validation of a mouse ES cell line w...
BackgroundHeterogeneous gene expressions of cells are widely observed in self-renewing pluripotent s...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Biology, 2014.Vita. Cataloged f...
It is known that on-and-off transcription factors (TFs) regulations play crucial roles in differenti...
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 ...
There is evidence that pluripotency of mouse embryonic stem (ES) cells is associated with the activi...
The expression of the transcription factors Oct4, Sox2, and Nanog is commonly associated with plurip...
The homeodomain transcription factor Nanog is a central part of the core pluripotency transcriptiona...
There is evidence that pluripotency of mouse embryonic stem (ES) cells is associated with the activi...
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...
Pluripotency and self-renewal of human embryonic stem cells (hESCs) is mediated by a complex interpl...
Transcription factor (TF) networks are thought to regulate embryonic stem cell (ESC) pluripotency. H...
BACKGROUND: Pluripotency and self-renewal of human embryonic stem cells (hESCs) is mediated by a com...
BackgroundHeterogeneous gene expressions of cells are widely observed in self-renewing pluripotent s...
BackgroundHeterogeneous gene expressions of cells are widely observed in self-renewing pluripotent s...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Biology, 2014.Vita. Cataloged f...
It is known that on-and-off transcription factors (TFs) regulations play crucial roles in differenti...
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 ...
There is evidence that pluripotency of mouse embryonic stem (ES) cells is associated with the activi...
The expression of the transcription factors Oct4, Sox2, and Nanog is commonly associated with plurip...
The homeodomain transcription factor Nanog is a central part of the core pluripotency transcriptiona...
There is evidence that pluripotency of mouse embryonic stem (ES) cells is associated with the activi...
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...
Pluripotency and self-renewal of human embryonic stem cells (hESCs) is mediated by a complex interpl...
Transcription factor (TF) networks are thought to regulate embryonic stem cell (ESC) pluripotency. H...
BACKGROUND: Pluripotency and self-renewal of human embryonic stem cells (hESCs) is mediated by a com...
BackgroundHeterogeneous gene expressions of cells are widely observed in self-renewing pluripotent s...
BackgroundHeterogeneous gene expressions of cells are widely observed in self-renewing pluripotent s...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Biology, 2014.Vita. Cataloged f...
It is known that on-and-off transcription factors (TFs) regulations play crucial roles in differenti...