AbstractTranscriptional enhancers integrate information derived from transcription factor binding to control gene expression. One key question concerns the extent of trans- and cis-regulatory variation in how co-expressed genes are controlled. The Drosophila CNS midline cells constitute a group of neurons and glia in which expression changes can be readily characterized during specification and differentiation. Using a transgenic approach, we compare the cis-regulation of multiple genes expressed in the Drosophila CNS midline primordium cells, and show that while the expression patterns may appear alike, the target genes are not equivalent in how these common expression patterns are achieved. Some genes utilize a single enhancer that promot...
Here we describe the embryonic CNS expression of 5,000 GAL4 lines made using molecularly defined cis...
Here we describe the embryonic CNS expression of 5,000 GAL4 lines made using molecularly defined cis...
Formation of spatial gene expression patterns in development depends on transcriptional responses me...
AbstractIn early Drosophila embryos, the transcription factor Dorsal regulates patterns of gene expr...
In early Drosophila embryos, the transcription factor Dorsal regulates patterns of gene expression a...
In early Drosophila embryos, the transcription factor Dorsal regulates patterns of gene expression a...
AbstractThe Drosophila single-minded gene controls CNS midline cell development by both activating m...
One of the key issues in studying transcriptional regulation during development is how to employ gen...
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 ...
AbstractIn Drosophila, genes of the Enhancer of split Complex [E(spl)-C] are important components of...
The Drosophila single-minded gene controls CNS midline cell development by both activating midline g...
SummaryHere, we describe the embryonic central nervous system expression of 5,000 GAL4 lines made us...
AbstractIn early Drosophila embryos, the transcription factor Dorsal regulates patterns of gene expr...
In early Drosophila embryos, the transcription factor Dorsal regulates patterns of gene expression a...
Here we describe the embryonic CNS expression of 5,000 GAL4 lines made using molecularly defined cis...
Here we describe the embryonic CNS expression of 5,000 GAL4 lines made using molecularly defined cis...
Formation of spatial gene expression patterns in development depends on transcriptional responses me...
AbstractIn early Drosophila embryos, the transcription factor Dorsal regulates patterns of gene expr...
In early Drosophila embryos, the transcription factor Dorsal regulates patterns of gene expression a...
In early Drosophila embryos, the transcription factor Dorsal regulates patterns of gene expression a...
AbstractThe Drosophila single-minded gene controls CNS midline cell development by both activating m...
One of the key issues in studying transcriptional regulation during development is how to employ gen...
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 ...
AbstractIn Drosophila, genes of the Enhancer of split Complex [E(spl)-C] are important components of...
The Drosophila single-minded gene controls CNS midline cell development by both activating midline g...
SummaryHere, we describe the embryonic central nervous system expression of 5,000 GAL4 lines made us...
AbstractIn early Drosophila embryos, the transcription factor Dorsal regulates patterns of gene expr...
In early Drosophila embryos, the transcription factor Dorsal regulates patterns of gene expression a...
Here we describe the embryonic CNS expression of 5,000 GAL4 lines made using molecularly defined cis...
Here we describe the embryonic CNS expression of 5,000 GAL4 lines made using molecularly defined cis...
Formation of spatial gene expression patterns in development depends on transcriptional responses me...