Recognition of bacterial promoters is regulated by two distinct classes of sequence-specific sigma factors, σ(70) or σ(54), that differ both in their primary sequence and in the requirement of the latter for activation via enhancer-bound upstream activators. The σ(54) version controls gene expression in response to stress, often mediating pathogenicity. Its activator proteins are members of the AAA+ superfamily and use adenosine triphosphate (ATP) hydrolysis to remodel initially auto-inhibited holoenzyme promoter complexes. We have mapped this remodeling using single-molecule fluorescence spectroscopy. Initial remodeling is nucleotide-independent and driven by binding both ssDNA during promoter melting and activator. However, DNA loading in...
Bacterial sigma factors are subunits of RNA polymerase that direct the holoenzyme to specific sets o...
The transcription of RNA from a DNA template is an essential and highly regulated step in every livi...
The bacterial activator protein NorR binds to enhancer-like elements, upstream of the promoter site,...
Transcription initiation is highly regulated in bacterial cells, allowing adaptive gene regulation i...
Transcription initiation is highly regulated in bacterial cells, allowing adaptive gene regulation i...
Bacterial sigma54 (σ⁵⁴) promoters are the DNA-binding motif for σ⁵⁴-containing RNA polymerase (RNAP)...
Bacterial enhancer-binding proteins (bEBPs) are specialised transcriptional activators. bEBPs are he...
SummaryThe σ factors are the key regulators of bacterial transcription initiation. Through direct re...
SummaryThe key step in bacterial promoter opening is recognition of the −10 promoter element (T−12A−...
Specific promoter recognition by bacterial RNA polymerase is mediated by σ subunits, which assemble ...
Bacterial sigma factors are subunits of RNA polymerase that direct the holoenzyme to specific sets o...
Transcription by RNA polymerase (RNAP) in bacteria requires specific promoter recognition by sigma f...
Specific promoter recognition by bacterial RNA polymerase is mediated by \u3c3 subunits, which assem...
The interactions between the sigma54-containing RNA polymerase (sigma54-RNAP) and the region of the ...
Bacterial sigma factors are subunits of RNA polymerase that direct the holoenzyme to specific sets o...
Bacterial sigma factors are subunits of RNA polymerase that direct the holoenzyme to specific sets o...
The transcription of RNA from a DNA template is an essential and highly regulated step in every livi...
The bacterial activator protein NorR binds to enhancer-like elements, upstream of the promoter site,...
Transcription initiation is highly regulated in bacterial cells, allowing adaptive gene regulation i...
Transcription initiation is highly regulated in bacterial cells, allowing adaptive gene regulation i...
Bacterial sigma54 (σ⁵⁴) promoters are the DNA-binding motif for σ⁵⁴-containing RNA polymerase (RNAP)...
Bacterial enhancer-binding proteins (bEBPs) are specialised transcriptional activators. bEBPs are he...
SummaryThe σ factors are the key regulators of bacterial transcription initiation. Through direct re...
SummaryThe key step in bacterial promoter opening is recognition of the −10 promoter element (T−12A−...
Specific promoter recognition by bacterial RNA polymerase is mediated by σ subunits, which assemble ...
Bacterial sigma factors are subunits of RNA polymerase that direct the holoenzyme to specific sets o...
Transcription by RNA polymerase (RNAP) in bacteria requires specific promoter recognition by sigma f...
Specific promoter recognition by bacterial RNA polymerase is mediated by \u3c3 subunits, which assem...
The interactions between the sigma54-containing RNA polymerase (sigma54-RNAP) and the region of the ...
Bacterial sigma factors are subunits of RNA polymerase that direct the holoenzyme to specific sets o...
Bacterial sigma factors are subunits of RNA polymerase that direct the holoenzyme to specific sets o...
The transcription of RNA from a DNA template is an essential and highly regulated step in every livi...
The bacterial activator protein NorR binds to enhancer-like elements, upstream of the promoter site,...