Escherichia coli endonuclease III (EndoIII) and MutY are DNA glycosylases that contain [4Fe4S] clusters and that serve to maintain the integrity of the genome after oxidative stress. Electrochemical studies on highly oriented pyrolytic graphite (HOPG) revealed that DNA binding by EndoIII leads to a large negative shift in the midpoint potential of the cluster, consistent with stabilization of the oxidized [4Fe4S]^(3+) form. However, the smooth, hydrophobic HOPG surface is nonideal for working with proteins in the absence of DNA. In this work, we use thin film voltammetry on a pyrolytic graphite edge electrode to overcome these limitations. Improved adsorption leads to substantial signals for both EndoIII and MutY in the absence of DNA, and ...
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 ...
A central question important to understanding DNA repair is how certain proteins are able to search ...
Escherichia coli endonuclease III (EndoIII) and MutY are DNA glycosylases that contain [4Fe4S] clust...
Escherichia coli endonuclease III (EndoIII) and MutY are DNA glycosylases that contain [4Fe4S] clust...
Here we describe a multiplexed electrochemical characterization of DNA-bound proteins containing [4F...
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 ...
MutY, like many DNA base excision repair enzymes, contains a [4Fe4S](2+) cluster of undetermined fun...
The [4Fe–4S] cluster is ubiquitous to a class of base excision repair enzymes in organisms ranging f...
The [4Fe–4S] cluster is ubiquitous to a class of base excision repair enzymes in organisms ranging f...
MutY, like many DNA base excision repair enzymes, contains a [4Fe4S](2+) cluster of undetermined fun...
MutY and endonuclease III, two DNA glycosylases from Escherichia coli, and AfUDG, a uracil DNA glyco...
Here we describe a multiplexed electrochemical characterization of DNA-bound proteins containing [4F...
Here we describe a multiplexed electrochemical characterization of DNA-bound proteins containing [4F...
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 ...
A central question important to understanding DNA repair is how certain proteins are able to search ...
Escherichia coli endonuclease III (EndoIII) and MutY are DNA glycosylases that contain [4Fe4S] clust...
Escherichia coli endonuclease III (EndoIII) and MutY are DNA glycosylases that contain [4Fe4S] clust...
Here we describe a multiplexed electrochemical characterization of DNA-bound proteins containing [4F...
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 ...
MutY, like many DNA base excision repair enzymes, contains a [4Fe4S](2+) cluster of undetermined fun...
The [4Fe–4S] cluster is ubiquitous to a class of base excision repair enzymes in organisms ranging f...
The [4Fe–4S] cluster is ubiquitous to a class of base excision repair enzymes in organisms ranging f...
MutY, like many DNA base excision repair enzymes, contains a [4Fe4S](2+) cluster of undetermined fun...
MutY and endonuclease III, two DNA glycosylases from Escherichia coli, and AfUDG, a uracil DNA glyco...
Here we describe a multiplexed electrochemical characterization of DNA-bound proteins containing [4F...
Here we describe a multiplexed electrochemical characterization of DNA-bound proteins containing [4F...
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 ...
A central question important to understanding DNA repair is how certain proteins are able to search ...