The αεθ core of Escherichia coli DNA polymerase III (Pol III) associates with the β2 sliding clamp to processively synthesize DNA and remove misincorporated nucleotides. The α subunit is the polymerase while ε is the 3\u27 to 5\u27 proofreading exonuclease. In contrast to the polymerase activity of Pol III, dynamic features of proofreading are poorly understood. We used single-molecule assays to determine the excision rate and processivity of the β2 -associated Pol III core, and observed that both properties are enhanced by mutational strengthening of the interaction between ε and β2. Thus, the ε-β2 contact is maintained in both the synthesis and proofreading modes. Remarkably, single-molecule real-time fluorescence imaging revealed the dyn...
Processive DNA synthesis by the alpha epsilon theta core of the Escherichia coli Pol III replicase r...
Processive DNA synthesis by the alpha epsilon theta core of the Escherichia coli Pol III replicase r...
Proofreading by replicative DNA polymerases is a fundamental mechanism ensuring DNA replication fide...
The alpha epsilon theta core of Escherichia coli DNA polymerase III (Pol III) associates with the be...
Processive DNA synthesis by the αεθ core of the Escherichia coli Pol III replicase requires it to be...
DNA synthesis, carried out by DNA polymerases, requires balancing speed and accuracy for faithful re...
Processive DNA synthesis by the αÉ"θ core of the Escherichia coli Pol III replicase requires it to b...
DNA synthesis, carried out by DNA polymerases, requires balancing speed and accuracy for faithful re...
A complex of the three (αεθ) core subunits and the β2 sliding clamp is responsible for DNA synthesis...
Proofreading by replicative DNA polymerases is a fundamental mechanism ensuring DNA replication fide...
Processive DNA synthesis by the alpha epsilon theta core of the Escherichia coli Pol III replicase r...
The ε-subunit contains the catalytic site for the 3 ′ → 5 ′ proof-reading exonuclease that function...
Proofreading exonuclease on a tether: the complex between the E. coli DNA polymerase III subunits α,...
DNA polymerases are responsible for the replication and repair of DNA found in all DNA-based organis...
DNA polymerases are responsible for the replication and repair of DNA found in all DNA-based organis...
Processive DNA synthesis by the alpha epsilon theta core of the Escherichia coli Pol III replicase r...
Processive DNA synthesis by the alpha epsilon theta core of the Escherichia coli Pol III replicase r...
Proofreading by replicative DNA polymerases is a fundamental mechanism ensuring DNA replication fide...
The alpha epsilon theta core of Escherichia coli DNA polymerase III (Pol III) associates with the be...
Processive DNA synthesis by the αεθ core of the Escherichia coli Pol III replicase requires it to be...
DNA synthesis, carried out by DNA polymerases, requires balancing speed and accuracy for faithful re...
Processive DNA synthesis by the αÉ"θ core of the Escherichia coli Pol III replicase requires it to b...
DNA synthesis, carried out by DNA polymerases, requires balancing speed and accuracy for faithful re...
A complex of the three (αεθ) core subunits and the β2 sliding clamp is responsible for DNA synthesis...
Proofreading by replicative DNA polymerases is a fundamental mechanism ensuring DNA replication fide...
Processive DNA synthesis by the alpha epsilon theta core of the Escherichia coli Pol III replicase r...
The ε-subunit contains the catalytic site for the 3 ′ → 5 ′ proof-reading exonuclease that function...
Proofreading exonuclease on a tether: the complex between the E. coli DNA polymerase III subunits α,...
DNA polymerases are responsible for the replication and repair of DNA found in all DNA-based organis...
DNA polymerases are responsible for the replication and repair of DNA found in all DNA-based organis...
Processive DNA synthesis by the alpha epsilon theta core of the Escherichia coli Pol III replicase r...
Processive DNA synthesis by the alpha epsilon theta core of the Escherichia coli Pol III replicase r...
Proofreading by replicative DNA polymerases is a fundamental mechanism ensuring DNA replication fide...