AbstractIn Drosophila, genes of the Enhancer of split Complex [E(spl)-C] are important components of the Notch (N) cell–cell signaling pathway, which is utilized in imaginal discs to effect a series of cell fate decisions during adult peripheral nervous system development. Seven genes in the complex encode basic helix-loop-helix (bHLH) transcriptional repressors, while 4 others encode members of the Bearded family of small proteins. A striking diversity is observed in the imaginal disc expression patterns of the various E(spl)-C genes, suggestive of a diversity of function, but the mechanistic basis of this variety has not been elucidated. Here we present strong evidence from promoter–reporter transgene experiments that regulation at the tr...
AbstractBackground: Cell-specific gene regulation is often controlled by specific combinations of DN...
AbstractTranscriptional enhancers integrate information derived from transcription factor binding to...
Repressors are frequently deployed to limit the transcriptional response to signalling pathways. For...
AbstractIn Drosophila, genes of the Enhancer of split Complex [E(spl)-C] are important components of...
AbstractExpression of the Drosophila Enhancer of split [E(spl)] genes, and their homologues in other...
AbstractExpression of the Drosophila Enhancer of split [E(spl)] genes, and their homologues in other...
Seven Enhancer of split genes in Drosophila melanogaster encode basic-helix-loop-helix transcription...
has been established, Notch signalling represses atonal we also show that particular Enhancer-of-spl...
<div><p>In <em>Drosophila melanogaster</em>, <em>cis</em>-regulatory modules that are activated by t...
Growth and patterning are coordinated during development to define organ size and shape. The growth,...
Spatial and temporal gene regulation relies on a combinatorial code of sequence-specific transcripti...
The Drosophila Enhancer of split complex [E(spl)-C] is a remarkable complex of genes many of which a...
Spatial and temporal gene regulation relies on a combinatorial code of sequence-specific transcripti...
AbstractBackground: Cell-specific gene regulation is often controlled by specific combinations of DN...
<div><p>Growth and patterning are coordinated during development to define organ size and shape. The...
AbstractBackground: Cell-specific gene regulation is often controlled by specific combinations of DN...
AbstractTranscriptional enhancers integrate information derived from transcription factor binding to...
Repressors are frequently deployed to limit the transcriptional response to signalling pathways. For...
AbstractIn Drosophila, genes of the Enhancer of split Complex [E(spl)-C] are important components of...
AbstractExpression of the Drosophila Enhancer of split [E(spl)] genes, and their homologues in other...
AbstractExpression of the Drosophila Enhancer of split [E(spl)] genes, and their homologues in other...
Seven Enhancer of split genes in Drosophila melanogaster encode basic-helix-loop-helix transcription...
has been established, Notch signalling represses atonal we also show that particular Enhancer-of-spl...
<div><p>In <em>Drosophila melanogaster</em>, <em>cis</em>-regulatory modules that are activated by t...
Growth and patterning are coordinated during development to define organ size and shape. The growth,...
Spatial and temporal gene regulation relies on a combinatorial code of sequence-specific transcripti...
The Drosophila Enhancer of split complex [E(spl)-C] is a remarkable complex of genes many of which a...
Spatial and temporal gene regulation relies on a combinatorial code of sequence-specific transcripti...
AbstractBackground: Cell-specific gene regulation is often controlled by specific combinations of DN...
<div><p>Growth and patterning are coordinated during development to define organ size and shape. The...
AbstractBackground: Cell-specific gene regulation is often controlled by specific combinations of DN...
AbstractTranscriptional enhancers integrate information derived from transcription factor binding to...
Repressors are frequently deployed to limit the transcriptional response to signalling pathways. For...