<div><p>A 30-node signed and directed network responsible for self-renewal and pluripotency of mouse embryonic stem cells (mESCs) was extracted from several ChIP-Seq and knockdown followed by expression prior studies. The underlying regulatory logic among network components was then learned using the initial network topology and single cell gene expression measurements from mESCs cultured in serum/LIF or serum-free 2i/LIF conditions. Comparing the learned network regulatory logic derived from cells cultured in serum/LIF vs. 2i/LIF revealed differential roles for Nanog, Oct4/Pou5f1, Sox2, Esrrb and Tcf3. Overall, gene expression in the serum/LIF condition was more variable than in the 2i/LIF but mostly consistent across the two conditions. E...
Self-renewal, the ability of a stem cell to divide repeatedly while maintaining an undifferentiated ...
Analyses of gene expression in single mouse embryonic stem cells (mESCs) cultured in serum and LIF r...
Pluripotency is a term in cell biology describing a unique state present in distinct stem cell lines...
A 30-node signed and directed network responsible for self-renewal and pluripotency of mouse embryon...
Abstract Background Recent work has revealed that a core group of transcription factors (TFs) regula...
During differentiation and reprogramming, new cell identities are generated by reconfiguration of ge...
Embryonic stem cells (ESCs), characterized by their ability to both self-renew and differentiate int...
Understanding the molecular mechanisms controlling pluripotency in embryonic stem cells (ESCs) is of...
<div><p>Multiple experimental data demonstrated that the core gene network orchestrating self-renewa...
Transcription factor (TF) networks are thought to regulate embryonic stem cell (ESC) pluripotency. H...
SummaryAnalyses of gene expression in single mouse embryonic stem cells (mESCs) cultured in serum an...
Multiple experimental data demonstrated that the core gene network orchestrating self-renewal and di...
Motivation: Transcriptional regulatory networks controlling cell fate decisions in mammalian embryon...
Analyses of gene expression in single mouse embryonic stem cells (mESCs) cultured in serum and LIF r...
SummaryMuch attention has focused on a small set of transcription factors that maintain human or mou...
Self-renewal, the ability of a stem cell to divide repeatedly while maintaining an undifferentiated ...
Analyses of gene expression in single mouse embryonic stem cells (mESCs) cultured in serum and LIF r...
Pluripotency is a term in cell biology describing a unique state present in distinct stem cell lines...
A 30-node signed and directed network responsible for self-renewal and pluripotency of mouse embryon...
Abstract Background Recent work has revealed that a core group of transcription factors (TFs) regula...
During differentiation and reprogramming, new cell identities are generated by reconfiguration of ge...
Embryonic stem cells (ESCs), characterized by their ability to both self-renew and differentiate int...
Understanding the molecular mechanisms controlling pluripotency in embryonic stem cells (ESCs) is of...
<div><p>Multiple experimental data demonstrated that the core gene network orchestrating self-renewa...
Transcription factor (TF) networks are thought to regulate embryonic stem cell (ESC) pluripotency. H...
SummaryAnalyses of gene expression in single mouse embryonic stem cells (mESCs) cultured in serum an...
Multiple experimental data demonstrated that the core gene network orchestrating self-renewal and di...
Motivation: Transcriptional regulatory networks controlling cell fate decisions in mammalian embryon...
Analyses of gene expression in single mouse embryonic stem cells (mESCs) cultured in serum and LIF r...
SummaryMuch attention has focused on a small set of transcription factors that maintain human or mou...
Self-renewal, the ability of a stem cell to divide repeatedly while maintaining an undifferentiated ...
Analyses of gene expression in single mouse embryonic stem cells (mESCs) cultured in serum and LIF r...
Pluripotency is a term in cell biology describing a unique state present in distinct stem cell lines...