SummaryCombinatorial transcription factor (TF) interactions control cellular phenotypes and, therefore, underpin stem cell formation, maintenance, and differentiation. Here, we report the genome-wide binding patterns and combinatorial interactions for ten key regulators of blood stem/progenitor cells (SCL/TAL1, LYL1, LMO2, GATA2, RUNX1, MEIS1, PU.1, ERG, FLI-1, and GFI1B), thus providing the most comprehensive TF data set for any adult stem/progenitor cell type to date. Genome-wide computational analysis of complex binding patterns, followed by functional validation, revealed the following: first, a previously unrecognized combinatorial interaction between a heptad of TFs (SCL, LYL1, LMO2, GATA2, RUNX1, ERG, and FLI-1). Second, we implicate...
Pluripotent stem cells provide a powerful system to dissect the underlying molecular dynamics that r...
Extrinsic and intrinsic regulators are responsible for the tight control of hematopoietic stem cells...
Developmental hematopoiesis sees the generation of the first blood cells and definitive blood during...
Combinatorial transcription factor (TF) interactions control cellular phenotypes and, therefore, und...
SummaryCombinatorial transcription factor (TF) interactions control cellular phenotypes and, therefo...
Cellular decision-making is mediated by a complex interplay of external stimuli with the intracellul...
Cellular decision-making is mediated by a complex interplay of external stimuli with the intracellul...
Cellular decision-making is mediated by a complex interplay of external stimuli with the intracellul...
Cellular decision-making is mediated by a complex interplay of external stimuli with the intracellul...
© 2013 by The American Society of Hematology. Genome-wide combinatorial binding patterns for key tr...
Recent advances in molecular profiling provide descriptive datasets of complex differentiation lands...
Recent advances in molecular profiling provide descriptive datasets of complex differentiation lands...
<div><p>Extrinsic and intrinsic regulators are responsible for the tight control of hematopoietic st...
SummaryWe used the paradigmatic GATA-PU.1 axis to explore, at the systems level, dynamic relationshi...
Adult blood contains a mixture of mature cell types, each with specialized functions. Single hematop...
Pluripotent stem cells provide a powerful system to dissect the underlying molecular dynamics that r...
Extrinsic and intrinsic regulators are responsible for the tight control of hematopoietic stem cells...
Developmental hematopoiesis sees the generation of the first blood cells and definitive blood during...
Combinatorial transcription factor (TF) interactions control cellular phenotypes and, therefore, und...
SummaryCombinatorial transcription factor (TF) interactions control cellular phenotypes and, therefo...
Cellular decision-making is mediated by a complex interplay of external stimuli with the intracellul...
Cellular decision-making is mediated by a complex interplay of external stimuli with the intracellul...
Cellular decision-making is mediated by a complex interplay of external stimuli with the intracellul...
Cellular decision-making is mediated by a complex interplay of external stimuli with the intracellul...
© 2013 by The American Society of Hematology. Genome-wide combinatorial binding patterns for key tr...
Recent advances in molecular profiling provide descriptive datasets of complex differentiation lands...
Recent advances in molecular profiling provide descriptive datasets of complex differentiation lands...
<div><p>Extrinsic and intrinsic regulators are responsible for the tight control of hematopoietic st...
SummaryWe used the paradigmatic GATA-PU.1 axis to explore, at the systems level, dynamic relationshi...
Adult blood contains a mixture of mature cell types, each with specialized functions. Single hematop...
Pluripotent stem cells provide a powerful system to dissect the underlying molecular dynamics that r...
Extrinsic and intrinsic regulators are responsible for the tight control of hematopoietic stem cells...
Developmental hematopoiesis sees the generation of the first blood cells and definitive blood during...