Widespread microbial genome sequencing presents an opportunity to understand the gene regulatory networks of non-model organisms. This requires knowledge of the binding sites for transcription factors whose DNA-binding properties are unknown or difficult to infer. We adapted a protein structure-based method to predict the specificities and putative regulons of homologous transcription factors across diverse species. As a proof-of-concept we predicted the specificities and transcriptional target genes of divergent archaeal feast/famine regulatory proteins, several of which are encoded in the genome of Halobacterium salinarum. This was validated by comparison to experimentally determined specificities for transcription factors in distantly re...
Toward the goal of identifying complete sets of transcription factor (TF)-binding sites in the genom...
Members of the family Geobacteraceae are an important group of microorganisms from the delta subdivi...
DNA-binding transcription factors (TFs) are essential components of transcriptional regulatory netwo...
Widespread microbial genome sequencing presents an opportunity to understand the gene regulatory net...
© 2014 Ashworth et al. Widespread microbial genome sequencing presents an opportunity to understand ...
<p><b>A)</b> Predicted novel transcription factor-DNA binding site (TFBS) motifs for the FFRP repert...
DNA-binding Transcription Factors (TFs) play a central role in regulation of gene expression in prok...
BackgroundExpansion of transcription factors is believed to have played a crucial role in evolution ...
SummaryFeast/famine regulatory proteins (FFRPs) comprise the largest group of archaeal transcription...
Genome analysis has revealed that members of the Lrp family of transcriptional regulators are widely...
Thesis (Ph.D.)--University of Washington, 2013Lineage-specific expansions of transcription factors (...
Transcription factors (TFs) control gene expression by direct or indirect activation or repression o...
Comparative genomics approaches are broadly used for analysis of transcriptional regulation in bacte...
Archaea, which represent a large fraction of the phylogenetic diversity of organisms, are prokaryote...
Members of the family Geobacteraceae are an important group of microorganisms from the delta subdivi...
Toward the goal of identifying complete sets of transcription factor (TF)-binding sites in the genom...
Members of the family Geobacteraceae are an important group of microorganisms from the delta subdivi...
DNA-binding transcription factors (TFs) are essential components of transcriptional regulatory netwo...
Widespread microbial genome sequencing presents an opportunity to understand the gene regulatory net...
© 2014 Ashworth et al. Widespread microbial genome sequencing presents an opportunity to understand ...
<p><b>A)</b> Predicted novel transcription factor-DNA binding site (TFBS) motifs for the FFRP repert...
DNA-binding Transcription Factors (TFs) play a central role in regulation of gene expression in prok...
BackgroundExpansion of transcription factors is believed to have played a crucial role in evolution ...
SummaryFeast/famine regulatory proteins (FFRPs) comprise the largest group of archaeal transcription...
Genome analysis has revealed that members of the Lrp family of transcriptional regulators are widely...
Thesis (Ph.D.)--University of Washington, 2013Lineage-specific expansions of transcription factors (...
Transcription factors (TFs) control gene expression by direct or indirect activation or repression o...
Comparative genomics approaches are broadly used for analysis of transcriptional regulation in bacte...
Archaea, which represent a large fraction of the phylogenetic diversity of organisms, are prokaryote...
Members of the family Geobacteraceae are an important group of microorganisms from the delta subdivi...
Toward the goal of identifying complete sets of transcription factor (TF)-binding sites in the genom...
Members of the family Geobacteraceae are an important group of microorganisms from the delta subdivi...
DNA-binding transcription factors (TFs) are essential components of transcriptional regulatory netwo...