Notch signaling plays a key role in many cell fate decisions during development by directing different gene expression programs via the transcription factor CSL, known as Su(H) in Drosophila Which target genes are responsive to Notch signaling is influenced by the chromatin state of enhancers, yet how this is regulated is not fully known. Detecting a specific increase in the histone variant H3.3 in response to Notch signaling, we tested which chromatin remodelers or histone chaperones are required for the changes in enhancer accessibility to Su(H) binding. We show a crucial role for the Brahma SWI/SNF chromatin remodeling complex, including the actin-related BAP55 subunit, in conferring enhancer accessibility and enabling the transcriptiona...
AbstractThe Brahma (Brm) complex of Drosophila melanogaster is a SWI/SNF-related chromatin remodelin...
Chromatin is a highly dynamic, regulatory component in the process of transcription, repair, recombi...
A systems understanding of nuclear organization and events is critical for determining how cells div...
The conserved Notch pathway functions in diverse developmental and disease-related processes, requir...
During normal development, different genes are expressed in different cell types, often directed by ...
Notch signaling is iteratively used throughout development to maintain stem cell potential or in oth...
Genes encoding subunits of SWI/SNF (BAF) chromatin remodelling complexes are collectively altered in...
AbstractThe conserved SWI/SNF chromatin remodeling complex uses the energy from ATP hydrolysis to al...
The chromatin remodeler SWI/SNF is an important participant in gene activation, functioning predomin...
SummaryNotch signaling controls numerous cell fate decisions during animal development. These typica...
Organismal development and cell differentiation critically depend on chromatin state transitions. Ho...
Enhancers are regulatory elements that increase transcription activity of genes. The general mechani...
A fundamental as yet incompletely understood feature of Notch signal transduction is a transcription...
Cellular differentiation relies on the highly conserved Notch signaling pathway. Notch activity indu...
The multi-subunit chromatin remodeler, SWI/SNF, is evolutionarily conserved from yeast to humans. Th...
AbstractThe Brahma (Brm) complex of Drosophila melanogaster is a SWI/SNF-related chromatin remodelin...
Chromatin is a highly dynamic, regulatory component in the process of transcription, repair, recombi...
A systems understanding of nuclear organization and events is critical for determining how cells div...
The conserved Notch pathway functions in diverse developmental and disease-related processes, requir...
During normal development, different genes are expressed in different cell types, often directed by ...
Notch signaling is iteratively used throughout development to maintain stem cell potential or in oth...
Genes encoding subunits of SWI/SNF (BAF) chromatin remodelling complexes are collectively altered in...
AbstractThe conserved SWI/SNF chromatin remodeling complex uses the energy from ATP hydrolysis to al...
The chromatin remodeler SWI/SNF is an important participant in gene activation, functioning predomin...
SummaryNotch signaling controls numerous cell fate decisions during animal development. These typica...
Organismal development and cell differentiation critically depend on chromatin state transitions. Ho...
Enhancers are regulatory elements that increase transcription activity of genes. The general mechani...
A fundamental as yet incompletely understood feature of Notch signal transduction is a transcription...
Cellular differentiation relies on the highly conserved Notch signaling pathway. Notch activity indu...
The multi-subunit chromatin remodeler, SWI/SNF, is evolutionarily conserved from yeast to humans. Th...
AbstractThe Brahma (Brm) complex of Drosophila melanogaster is a SWI/SNF-related chromatin remodelin...
Chromatin is a highly dynamic, regulatory component in the process of transcription, repair, recombi...
A systems understanding of nuclear organization and events is critical for determining how cells div...