During DNA replication replicative polymerases move in discrete mechanical steps along the DNA template. To address how the chemical cycle is coupled to mechanical motion of the enzyme, here we use optical tweezers to study the translocation mechanism of individual bacteriophage Phi29 DNA polymerases during processive DNA replication. We determine the main kinetic parameters of the nucleotide incorporation cycle and their dependence on external load and nucleotide (dNTP) concentration. The data is inconsistent with power stroke models for translocation, instead supports a loose-coupling mechanism between chemical catalysis and mechanical translocation during DNA replication. According to this mechanism the DNA polymerase works by alternatin...
DNA Polymerases (DNAPs) are enzymes that make DNA molecules by assembling nucleotides and are respon...
Engineered DNA polymerases continue to be the workhorses of many applications in biotechnology, medi...
DNA polymerase catalyzes the accurate transfer of genetic information from one generation to the nex...
Replicative DNA polymerases (DNAPs) are molecular motors responsible for high fidelity replication o...
Exonucleolytic editing of incorrectly incorporated nucleotides by replicative DNA polymerases (DNAPs...
DNA polymerase I from Rhodothermus marinus is a high-fidelity DNA polymerase capable of operating at...
AbstractReplicative DNA polymerases are highly processive enzymes that polymerize thousands of nucle...
ABSTRACT: Ribonucleoside triphosphates (rNTPs) are fre-quently incorporated during DNA synthesis by ...
ABSTRACT: Exonucleolytic editing of incorrectly incorporated nucleotides by replicative DNA polymera...
ABSTRACT: Exonucleolytic editing of incorrectly incorporated nucleotides by replicative DNA polymera...
High fidelity polymerases are efficient catalysts of phosphodiester bond formation during DNA replic...
Ribonucleoside triphosphates (rNTPs) are frequently incorporated during DNA synthesis by replicative...
SummaryHigh-fidelity DNA polymerases copy DNA rapidly and accurately by adding correct deoxynucleoti...
AbstractMolecular dynamics simulations are presented for a Thermus aquaticus (Taq) DNA polymerase I ...
DNA Polymerases (DNAPs) are enzymes that make DNA molecules by assembling nucleotides and are respon...
DNA Polymerases (DNAPs) are enzymes that make DNA molecules by assembling nucleotides and are respon...
Engineered DNA polymerases continue to be the workhorses of many applications in biotechnology, medi...
DNA polymerase catalyzes the accurate transfer of genetic information from one generation to the nex...
Replicative DNA polymerases (DNAPs) are molecular motors responsible for high fidelity replication o...
Exonucleolytic editing of incorrectly incorporated nucleotides by replicative DNA polymerases (DNAPs...
DNA polymerase I from Rhodothermus marinus is a high-fidelity DNA polymerase capable of operating at...
AbstractReplicative DNA polymerases are highly processive enzymes that polymerize thousands of nucle...
ABSTRACT: Ribonucleoside triphosphates (rNTPs) are fre-quently incorporated during DNA synthesis by ...
ABSTRACT: Exonucleolytic editing of incorrectly incorporated nucleotides by replicative DNA polymera...
ABSTRACT: Exonucleolytic editing of incorrectly incorporated nucleotides by replicative DNA polymera...
High fidelity polymerases are efficient catalysts of phosphodiester bond formation during DNA replic...
Ribonucleoside triphosphates (rNTPs) are frequently incorporated during DNA synthesis by replicative...
SummaryHigh-fidelity DNA polymerases copy DNA rapidly and accurately by adding correct deoxynucleoti...
AbstractMolecular dynamics simulations are presented for a Thermus aquaticus (Taq) DNA polymerase I ...
DNA Polymerases (DNAPs) are enzymes that make DNA molecules by assembling nucleotides and are respon...
DNA Polymerases (DNAPs) are enzymes that make DNA molecules by assembling nucleotides and are respon...
Engineered DNA polymerases continue to be the workhorses of many applications in biotechnology, medi...
DNA polymerase catalyzes the accurate transfer of genetic information from one generation to the nex...