The Drosophila single-minded gene controls CNS midline cell development by both activating midline gene expression and repressing lateral CNS gene expression in the midline cells. The mechanism by which Single-minded represses transcription was examined using the ventral nervous system defective gene as a target gene. Transgenic-lacZ analysis of constructs containing fragments of the ventral nervous system defective regulatory region identified sequences required for lateral CNS transcription and midline repression. Elimination of Single-minded:Tango binding sites within the ventral nervous system defective gene did not affect midline repression. Mutants of Single-minded that removed the DNA binding and transcriptional activation regions ab...
AbstractIn early Drosophila embryos, the transcription factor Dorsal regulates patterns of gene expr...
The single-minded (sim) gene in Drosophila melanogaster has long been known to play important roles ...
The single-minded (sim) gene in Drosophila melanogaster has long been known to play important roles ...
AbstractThe Drosophila single-minded gene controls CNS midline cell development by both activating m...
In Drosophila, the development of the midline cells of the embryonic ventral nerve cord depends on t...
Central nervous system midline cells constitute a discrete group of Drosophila embryonic cells with ...
Central nervous system midline cells constitute a discrete group of Drosophila embryonic cells with ...
In Drosophila, the development of the midline cells of the embryonic ventral nerve cord depends on t...
AbstractPatterning of the Drosophila embryo requires not only the proper activation of determinants ...
Developmental regulatory proteins are commonly utilized in multiple cell types throughout developmen...
Developmental regulatory proteins are commonly utilized in multiple cell types throughout developmen...
AbstractIn Drosophila, the development of the midline cells of the embryonic ventral nerve cord depe...
In early Drosophila embryos, the transcription factor Dorsal regulates patterns of gene expression a...
AbstractTranscriptional enhancers integrate information derived from transcription factor binding to...
In early Drosophila embryos, the transcription factor Dorsal regulates patterns of gene expression a...
AbstractIn early Drosophila embryos, the transcription factor Dorsal regulates patterns of gene expr...
The single-minded (sim) gene in Drosophila melanogaster has long been known to play important roles ...
The single-minded (sim) gene in Drosophila melanogaster has long been known to play important roles ...
AbstractThe Drosophila single-minded gene controls CNS midline cell development by both activating m...
In Drosophila, the development of the midline cells of the embryonic ventral nerve cord depends on t...
Central nervous system midline cells constitute a discrete group of Drosophila embryonic cells with ...
Central nervous system midline cells constitute a discrete group of Drosophila embryonic cells with ...
In Drosophila, the development of the midline cells of the embryonic ventral nerve cord depends on t...
AbstractPatterning of the Drosophila embryo requires not only the proper activation of determinants ...
Developmental regulatory proteins are commonly utilized in multiple cell types throughout developmen...
Developmental regulatory proteins are commonly utilized in multiple cell types throughout developmen...
AbstractIn Drosophila, the development of the midline cells of the embryonic ventral nerve cord depe...
In early Drosophila embryos, the transcription factor Dorsal regulates patterns of gene expression a...
AbstractTranscriptional enhancers integrate information derived from transcription factor binding to...
In early Drosophila embryos, the transcription factor Dorsal regulates patterns of gene expression a...
AbstractIn early Drosophila embryos, the transcription factor Dorsal regulates patterns of gene expr...
The single-minded (sim) gene in Drosophila melanogaster has long been known to play important roles ...
The single-minded (sim) gene in Drosophila melanogaster has long been known to play important roles ...