BackgroundSite-specific transcription factors (TFs) bind DNA regulatory elements to control expression of target genes, forming the core of gene regulatory networks. Despite decades of research, most studies focus on only a small number of TFs and the roles of many remain unknown.ResultsWe present a systematic characterization of spatiotemporal gene expression patterns for all known or predicted Drosophila TFs throughout embryogenesis, the first such comprehensive study for any metazoan animal. We generated RNA expression patterns for all 708 TFs by in situ hybridization, annotated the patterns using an anatomical controlled vocabulary, and analyzed TF expression in the context of organ system development. Nearly all TFs are expressed durin...
Gene expression patterns can diverge between species due to changes in a gene's regulatory DNA or ch...
Gene expression patterns can diverge between species due to changes in a gene's regulatory DNA or ch...
Gene regulatory networks control the complex programs that drive development. Deciphering the connec...
BackgroundSite-specific transcription factors (TFs) bind DNA regulatory elements to control expressi...
BACKGROUND: Site-specific transcription factors (TFs) are coordinators of developmental and physiolo...
ABSTRACT: BACKGROUND: Cell and tissue specific gene expression is a defining feature of embryonic de...
ABSTRACT: BACKGROUND: Cell and tissue specific gene expression is a defining feature of embryonic de...
Identifying the genomic regions bound by sequence-specific regulatory factors is central both to dec...
Identifying the genomic regions bound by sequence-specific regulatory factors is central both to dec...
During embryonic development, a complex organism is formed from a single starting cell. These proces...
In early Drosophila embryos, the transcription factor Dorsal regulates patterns of gene expression a...
Abstract Background We previously established that six sequence-specific transcription factors that ...
During embryonic development, a complex organism is formed from a single starting cell. These proces...
AbstractIn early Drosophila embryos, the transcription factor Dorsal regulates patterns of gene expr...
To better characterize how variation in regulatory sequences drives divergence in gene expression, w...
Gene expression patterns can diverge between species due to changes in a gene's regulatory DNA or ch...
Gene expression patterns can diverge between species due to changes in a gene's regulatory DNA or ch...
Gene regulatory networks control the complex programs that drive development. Deciphering the connec...
BackgroundSite-specific transcription factors (TFs) bind DNA regulatory elements to control expressi...
BACKGROUND: Site-specific transcription factors (TFs) are coordinators of developmental and physiolo...
ABSTRACT: BACKGROUND: Cell and tissue specific gene expression is a defining feature of embryonic de...
ABSTRACT: BACKGROUND: Cell and tissue specific gene expression is a defining feature of embryonic de...
Identifying the genomic regions bound by sequence-specific regulatory factors is central both to dec...
Identifying the genomic regions bound by sequence-specific regulatory factors is central both to dec...
During embryonic development, a complex organism is formed from a single starting cell. These proces...
In early Drosophila embryos, the transcription factor Dorsal regulates patterns of gene expression a...
Abstract Background We previously established that six sequence-specific transcription factors that ...
During embryonic development, a complex organism is formed from a single starting cell. These proces...
AbstractIn early Drosophila embryos, the transcription factor Dorsal regulates patterns of gene expr...
To better characterize how variation in regulatory sequences drives divergence in gene expression, w...
Gene expression patterns can diverge between species due to changes in a gene's regulatory DNA or ch...
Gene expression patterns can diverge between species due to changes in a gene's regulatory DNA or ch...
Gene regulatory networks control the complex programs that drive development. Deciphering the connec...