Establishing gene regulatory networks during differentiation or reprogramming requires master or pioneer transcription factors (TFs) such as PU.1, a prototype master TF of hematopoietic lineage differentiation. To systematically determine molecular features that control its activity, here we analyze DNA-binding in vitro and genome-wide in vivo across different cell types with native or ectopic PU.1 expression. Although PU.1, in contrast to classical pioneer factors, is unable to access nucleosomal target sites in vitro, ectopic induction of PU.1 leads to the extensive remodeling of chromatin and redistribution of partner TFs. De novo chromatin access, stable binding, and redistribution of partner TFs both require PU.1's N-terminal acidic ac...
PU.1 is an ETS-family transcription factor that plays a broad range of roles in hematopoiesis. A dir...
PU.1 is an ETS-family transcription factor that plays a broad range of roles in hematopoiesis. A dir...
Transcription factors (TFs) forage the genome to instruct cell plasticity, identity, and differentia...
Establishing gene regulatory networks during differentiation or reprogramming requires master or pio...
Establishing gene regulatory networks during differentiation or reprogramming requires master or pio...
Establishing gene regulatory networks during differentiation or reprogramming requires master or pio...
Establishing gene regulatory networks during differentiation or reprogramming requires master or pio...
Establishing gene regulatory networks during differentiation or reprogramming requires master or pio...
The transcription factor PU.1 is crucial for the development of many hematopoietic lineages and its ...
The transcription factor PU.1 is crucial for the development of many hematopoietic lineages and its ...
The transcription factor PU.1 is crucial for the development of many hematopoietic lineages and its ...
The transcription factor PU.1 is crucial for the development of many hematopoietic lineages and its ...
SPI1 (also known as PU.1) is a dominant but transient regulator in early T-cell precursors and a pot...
SPI1 (also known as PU.1) is a dominant but transient regulator in early T-cell precursors and a pot...
PU.1 is an ETS-family transcription factor that plays a broad range of roles in hematopoiesis. A dir...
PU.1 is an ETS-family transcription factor that plays a broad range of roles in hematopoiesis. A dir...
PU.1 is an ETS-family transcription factor that plays a broad range of roles in hematopoiesis. A dir...
Transcription factors (TFs) forage the genome to instruct cell plasticity, identity, and differentia...
Establishing gene regulatory networks during differentiation or reprogramming requires master or pio...
Establishing gene regulatory networks during differentiation or reprogramming requires master or pio...
Establishing gene regulatory networks during differentiation or reprogramming requires master or pio...
Establishing gene regulatory networks during differentiation or reprogramming requires master or pio...
Establishing gene regulatory networks during differentiation or reprogramming requires master or pio...
The transcription factor PU.1 is crucial for the development of many hematopoietic lineages and its ...
The transcription factor PU.1 is crucial for the development of many hematopoietic lineages and its ...
The transcription factor PU.1 is crucial for the development of many hematopoietic lineages and its ...
The transcription factor PU.1 is crucial for the development of many hematopoietic lineages and its ...
SPI1 (also known as PU.1) is a dominant but transient regulator in early T-cell precursors and a pot...
SPI1 (also known as PU.1) is a dominant but transient regulator in early T-cell precursors and a pot...
PU.1 is an ETS-family transcription factor that plays a broad range of roles in hematopoiesis. A dir...
PU.1 is an ETS-family transcription factor that plays a broad range of roles in hematopoiesis. A dir...
PU.1 is an ETS-family transcription factor that plays a broad range of roles in hematopoiesis. A dir...
Transcription factors (TFs) forage the genome to instruct cell plasticity, identity, and differentia...