Abstract Background Recent work has revealed that a core group of transcription factors (TFs) regulates the key characteristics of embryonic stem (ES) cells: pluripotency and self-renewal. Current efforts focus on identifying genes that play important roles in maintaining pluripotency and self-renewal in ES cells and aim to understand the interactions among these genes. To that end, we investigated the use of unsigned and signed network analysis to identify pluripotency and differentiation related genes. Results We show that signed networks provide a better systems level understanding of the regulatory mechanisms of ES cells than unsigned networks, using two independent murine ES cell expression data sets. Specifically, using signed weighte...
Embryonic stem (ES) cells are of great interest as a model system for studying early developmental p...
SummaryTranscription factors (TFs) and their specific interactions with targets are crucial for spec...
Pluripotent stem cells provide a powerful system to dissect the underlying molecular dynamics that r...
Understanding the molecular mechanisms controlling pluripotency in embryonic stem cells (ESCs) is of...
Understanding the transcriptional regulation of pluripotent cells is of fundamental interest and wil...
Understanding the molecular mechanisms controlling pluripotency in embryonic stem cells (ESCs) is of...
It has been known that three core transcription factors (TFs), NANOG, OCT4, and SOX2, collaborate to...
SummaryMuch attention has focused on a small set of transcription factors that maintain human or mou...
textabstractEmbryonic stem (ES) cells are derived from the inner cell mass of blastocyst stage embry...
Transcription factor (TF) networks are thought to regulate embryonic stem cell (ESC) pluripotency. H...
A 30-node signed and directed network responsible for self-renewal and pluripotency of mouse embryon...
Understanding the transcriptional regulation of pluripotent cells is of fundamental interest and wil...
These journal issues entitled: Stem Cells, Tissue Regeneration and Repair (free suppl.)Knowledge of ...
It has been known that three core transcription factors (TFs), NANOG, OCT4, and SOX2, collaborate to...
<div><p>A 30-node signed and directed network responsible for self-renewal and pluripotency of mouse...
Embryonic stem (ES) cells are of great interest as a model system for studying early developmental p...
SummaryTranscription factors (TFs) and their specific interactions with targets are crucial for spec...
Pluripotent stem cells provide a powerful system to dissect the underlying molecular dynamics that r...
Understanding the molecular mechanisms controlling pluripotency in embryonic stem cells (ESCs) is of...
Understanding the transcriptional regulation of pluripotent cells is of fundamental interest and wil...
Understanding the molecular mechanisms controlling pluripotency in embryonic stem cells (ESCs) is of...
It has been known that three core transcription factors (TFs), NANOG, OCT4, and SOX2, collaborate to...
SummaryMuch attention has focused on a small set of transcription factors that maintain human or mou...
textabstractEmbryonic stem (ES) cells are derived from the inner cell mass of blastocyst stage embry...
Transcription factor (TF) networks are thought to regulate embryonic stem cell (ESC) pluripotency. H...
A 30-node signed and directed network responsible for self-renewal and pluripotency of mouse embryon...
Understanding the transcriptional regulation of pluripotent cells is of fundamental interest and wil...
These journal issues entitled: Stem Cells, Tissue Regeneration and Repair (free suppl.)Knowledge of ...
It has been known that three core transcription factors (TFs), NANOG, OCT4, and SOX2, collaborate to...
<div><p>A 30-node signed and directed network responsible for self-renewal and pluripotency of mouse...
Embryonic stem (ES) cells are of great interest as a model system for studying early developmental p...
SummaryTranscription factors (TFs) and their specific interactions with targets are crucial for spec...
Pluripotent stem cells provide a powerful system to dissect the underlying molecular dynamics that r...