Many DNA replication and DNA repair enzymes have been found to carry [4Fe4S] clusters. The major leading strand polymerase, DNA polymerase ε (Pol ε) from Saccharomyces cerevisiae, was recently reported to have a [4Fe4S] cluster located within the catalytic domain of the largest subunit, Pol2. Here the redox characteristics of the [4Fe4S] cluster in the context of that domain, Pol2CORE, are explored using DNA electrochemistry, and the effects of oxidation and rereduction on polymerase activity are examined. The exonuclease deficient variant D290A/E292A, Pol2COREexo–, was used to limit DNA degradation. While no redox signal is apparent for Pol2COREexo– on DNA-modified electrodes, a large cathodic signal centered at −140 mV vs NHE is observed ...
DNA-mediated charge transport (DNA CT) provides an avenue for long-range, rapid signaling between re...
A central question important to understanding DNA repair is how certain proteins are able to search ...
A central question important to understanding DNA repair is how certain proteins are able to search ...
Many DNA replication and DNA repair enzymes have been found to carry [4Fe4S] clusters. The major lea...
A [4Fe4S]2+ cluster in the C-terminal domain of the catalytic subunit of the eukaryotic B-family DNA...
A [4Fe4S]2+ cluster in the C-terminal domain of the catalytic subunit of the eukaryotic B-family DNA...
Eukaryotic B- family DNA polymerases have recently been shown to contain a conserved [4Fe- 4S]2+ clu...
Eukaryotic B- family DNA polymerases have recently been shown to contain a conserved [4Fe- 4S]2+ clu...
A [4Fe4S]^(2+) cluster in the C-terminal domain of the catalytic subunit of the eukaryotic B-family ...
DNA-mediated charge transport chemistry (DNA CT) offers an intriguing regulatory mechanism in biolog...
A central question important to understanding DNA repair is how certain proteins are able to search ...
DNA-mediated charge transport (DNA CT) provides an avenue for long-range, rapid signaling between re...
Many DNA-processing enzymes have been shown to contain a [4Fe4S] cluster, a common redox cofactor in...
A central question important to understanding DNA repair is how certain proteins are able to search ...
DNA-mediated charge transport (DNA CT) provides an avenue for long-range, rapid signaling between re...
DNA-mediated charge transport (DNA CT) provides an avenue for long-range, rapid signaling between re...
A central question important to understanding DNA repair is how certain proteins are able to search ...
A central question important to understanding DNA repair is how certain proteins are able to search ...
Many DNA replication and DNA repair enzymes have been found to carry [4Fe4S] clusters. The major lea...
A [4Fe4S]2+ cluster in the C-terminal domain of the catalytic subunit of the eukaryotic B-family DNA...
A [4Fe4S]2+ cluster in the C-terminal domain of the catalytic subunit of the eukaryotic B-family DNA...
Eukaryotic B- family DNA polymerases have recently been shown to contain a conserved [4Fe- 4S]2+ clu...
Eukaryotic B- family DNA polymerases have recently been shown to contain a conserved [4Fe- 4S]2+ clu...
A [4Fe4S]^(2+) cluster in the C-terminal domain of the catalytic subunit of the eukaryotic B-family ...
DNA-mediated charge transport chemistry (DNA CT) offers an intriguing regulatory mechanism in biolog...
A central question important to understanding DNA repair is how certain proteins are able to search ...
DNA-mediated charge transport (DNA CT) provides an avenue for long-range, rapid signaling between re...
Many DNA-processing enzymes have been shown to contain a [4Fe4S] cluster, a common redox cofactor in...
A central question important to understanding DNA repair is how certain proteins are able to search ...
DNA-mediated charge transport (DNA CT) provides an avenue for long-range, rapid signaling between re...
DNA-mediated charge transport (DNA CT) provides an avenue for long-range, rapid signaling between re...
A central question important to understanding DNA repair is how certain proteins are able to search ...
A central question important to understanding DNA repair is how certain proteins are able to search ...