An evolutionarily conserved zinc-binding motif is found close to the amino terminus of the largest subunits of DNA-dependent RNA polymerases from bacteria, archaea, and eukaryotes. In bacterial RNA polymerase, this motif, the zinc binding domain, has been implicated in protein–DNA interactions that stabilize the transcription elongation complex and that occur downstream of the catalytic center. Here, we show that this view is incorrect, and instead, the zinc binding domain interacts with product RNA located upstream of the catalytic center and the RNA-DNA hybrid, a view consistent with structural studies of the elongation complex. We engineered mutations that alter or remove the zinc binding domain of Escherichia coli RNA polymerase. Severa...
DNA polymerase III (pol III) of Gram-positive eubacteria is a catalytically bifunctional DNA polymer...
λN-mediated processive antitermination constitutes a paradigmatic transcription regulatory event, du...
There are three stages of transcribing DNA into RNA. These stages are initiation, elongation and ter...
Summary: The N‐terminal Zn‐finger motif of the β′ subunit of RNA polymerase contains two pairs ...
Poly(ADP-ribose) polymerase (EC 2.4.2.30) is a zinc-binding protein that specifically binds to a DNA...
The conserved amino-terminal region of the largest subunit of yeast RNA polymerase C is capable of b...
The availability of repeating 'Cys' and/or 'His' units in a particular order prompts the prediction ...
The availability of repeating 'Cys' and/or 'His' units in a particular order prompts the prediction ...
Poly(ADP-ribose)polymerase is a chromatin-associated enzyme of eukaryotic cell nuclei that catalyses...
AbstractThe availability of repeating ‘Cys’ and/or ‘His’ units in a particular order prompts the pre...
Transcription antitermination is an important mechanism that can control regulation of gene expressi...
The interaction between the Zinc Binding and RNA Polymerase Domains is divided into two regions with...
AbstractBackground: Transcriptional initiation and elongation provide control points in gene express...
By Energy Dispersive X-ray fluorescence we have determined that calf thymus poly(ADP-ribose) polymer...
Most RNA polymerases contain zinc, yet the precise function of zinc and its influence of polymerases...
DNA polymerase III (pol III) of Gram-positive eubacteria is a catalytically bifunctional DNA polymer...
λN-mediated processive antitermination constitutes a paradigmatic transcription regulatory event, du...
There are three stages of transcribing DNA into RNA. These stages are initiation, elongation and ter...
Summary: The N‐terminal Zn‐finger motif of the β′ subunit of RNA polymerase contains two pairs ...
Poly(ADP-ribose) polymerase (EC 2.4.2.30) is a zinc-binding protein that specifically binds to a DNA...
The conserved amino-terminal region of the largest subunit of yeast RNA polymerase C is capable of b...
The availability of repeating 'Cys' and/or 'His' units in a particular order prompts the prediction ...
The availability of repeating 'Cys' and/or 'His' units in a particular order prompts the prediction ...
Poly(ADP-ribose)polymerase is a chromatin-associated enzyme of eukaryotic cell nuclei that catalyses...
AbstractThe availability of repeating ‘Cys’ and/or ‘His’ units in a particular order prompts the pre...
Transcription antitermination is an important mechanism that can control regulation of gene expressi...
The interaction between the Zinc Binding and RNA Polymerase Domains is divided into two regions with...
AbstractBackground: Transcriptional initiation and elongation provide control points in gene express...
By Energy Dispersive X-ray fluorescence we have determined that calf thymus poly(ADP-ribose) polymer...
Most RNA polymerases contain zinc, yet the precise function of zinc and its influence of polymerases...
DNA polymerase III (pol III) of Gram-positive eubacteria is a catalytically bifunctional DNA polymer...
λN-mediated processive antitermination constitutes a paradigmatic transcription regulatory event, du...
There are three stages of transcribing DNA into RNA. These stages are initiation, elongation and ter...