BACKGROUND: The C. elegans Promoterome is a powerful resource for revealing the regulatory mechanisms by which transcription is controlled pan-genomically. Transcription factors will form the core of any systems biology model of genome control and therefore the promoter activity of Promoterome inserts for C. elegans transcription factor genes was examined, in vivo, with a reporter gene approach. RESULTS: Transgenic C. elegans strains were generated for 366 transcription factor promoter/gfp reporter gene fusions. GFP distributions were determined, and then summarized with reference to developmental stage and cell type. Reliability of these data was demonstrated by comparison to previously described gene product distributions. A detailed cons...
The Caenorhabditis elegans genome encodes more than 100 microRNAs (miRNAs). Genetic analyses of miRN...
Using DNA sequences 5′ to open reading frames, we have constructed green fluorescent protein (GFP) f...
An essential step for understanding the transcriptional circuits that control development and physio...
BACKGROUND: Transcription regulatory networks are composed of interactions between transcription fac...
Caenorhabditis elegans is a powerful model for studying gene regulation, as it has a compact genome...
Cell-type specific regulation of transcription drives the production of the myriad of different cell...
Gene expression is controlled through the binding of transcription factors (TFs) to regulatory genom...
BACKGROUND: Transcription regulatory networks are composed of protein-DNA interactions between trans...
Our understanding of biological processes in humans is often based on examination of analogous proce...
Using DNA sequences 59 to open reading frames, we have constructed green fluorescent protein (GFP) f...
Transcription factors (TFs) play a central role in controlling spatiotemporal gene expression and th...
Because there is considerable variation in gene expression even between closely related species, it ...
The Caenorhabditis elegans hermaphrodite is a complex multicellular animal that is composed of 959 s...
We have systematically examined the correlation between transcriptional expression pattern and the p...
RNA polymerase transcription initiation sites are largely unknown in Caenorhabditis elegans. The ini...
The Caenorhabditis elegans genome encodes more than 100 microRNAs (miRNAs). Genetic analyses of miRN...
Using DNA sequences 5′ to open reading frames, we have constructed green fluorescent protein (GFP) f...
An essential step for understanding the transcriptional circuits that control development and physio...
BACKGROUND: Transcription regulatory networks are composed of interactions between transcription fac...
Caenorhabditis elegans is a powerful model for studying gene regulation, as it has a compact genome...
Cell-type specific regulation of transcription drives the production of the myriad of different cell...
Gene expression is controlled through the binding of transcription factors (TFs) to regulatory genom...
BACKGROUND: Transcription regulatory networks are composed of protein-DNA interactions between trans...
Our understanding of biological processes in humans is often based on examination of analogous proce...
Using DNA sequences 59 to open reading frames, we have constructed green fluorescent protein (GFP) f...
Transcription factors (TFs) play a central role in controlling spatiotemporal gene expression and th...
Because there is considerable variation in gene expression even between closely related species, it ...
The Caenorhabditis elegans hermaphrodite is a complex multicellular animal that is composed of 959 s...
We have systematically examined the correlation between transcriptional expression pattern and the p...
RNA polymerase transcription initiation sites are largely unknown in Caenorhabditis elegans. The ini...
The Caenorhabditis elegans genome encodes more than 100 microRNAs (miRNAs). Genetic analyses of miRN...
Using DNA sequences 5′ to open reading frames, we have constructed green fluorescent protein (GFP) f...
An essential step for understanding the transcriptional circuits that control development and physio...