Engineered DNA polymerases continue to be the workhorses of many applications in biotechnology, medicine and nanotechnology. However, the dynamic interplay between the enzyme and the DNA remains unclear. In this study, we performed an extensive replica exchange with flexible tempering (REFT) molecular dynamics simulation of the ternary replicating complex of the archaeal family B DNA polymerase from the thermophile Thermococcus gorgonarius, right before the chemical step. The convoluted dynamics of the enzyme are reducible to rigid-body motions of six subdomains. Upon binding to the enzyme, the DNA double helix conformation changes from a twisted state to a partially untwisted state. The twisted state displays strong bending motion, whereby...
Herein we investigate the molecular bases of DNA polymerase I conformational dynamics that underlie ...
SummaryHigh-fidelity DNA polymerases copy DNA rapidly and accurately by adding correct deoxynucleoti...
A single copy of bacteriophage T7 DNA polymerase and DNA helicase advance the replication fork with ...
Engineered DNA polymerases continue to be the workhorses of many applications in biotechnology, medi...
During DNA replication replicative polymerases move in discrete mechanical steps along the DNA templ...
<div><p>During DNA replication, DNA polymerases follow an induced fit mechanism in order to rapidly ...
During DNA replication, DNA polymerases follow an induced fit mechanism in order to rapidly distingu...
AbstractMolecular dynamics simulations are presented for a Thermus aquaticus (Taq) DNA polymerase I ...
Optimizing DNA polymerases for a broad range of tasks requires an understanding of the factors influ...
Abstract: The Bacillus fragment, belonging to a class of high-fidelity polymerases, demonstrates hig...
Polymerases are protein enzymes that move along nucleic acid chains and catalyze template-based poly...
Replicative DNA polymerases are stalled by damaged DNA while the newly discovered Y-family DNA polym...
Herein we investigate the molecular bases of DNA polymerase I conformational dynamics that underlie ...
Herein we investigate the molecular bases of DNA polymerase I conformational dynamics that underlie ...
Herein we investigate the molecular bases of DNA polymerase I conformational dynamics that underlie ...
Herein we investigate the molecular bases of DNA polymerase I conformational dynamics that underlie ...
SummaryHigh-fidelity DNA polymerases copy DNA rapidly and accurately by adding correct deoxynucleoti...
A single copy of bacteriophage T7 DNA polymerase and DNA helicase advance the replication fork with ...
Engineered DNA polymerases continue to be the workhorses of many applications in biotechnology, medi...
During DNA replication replicative polymerases move in discrete mechanical steps along the DNA templ...
<div><p>During DNA replication, DNA polymerases follow an induced fit mechanism in order to rapidly ...
During DNA replication, DNA polymerases follow an induced fit mechanism in order to rapidly distingu...
AbstractMolecular dynamics simulations are presented for a Thermus aquaticus (Taq) DNA polymerase I ...
Optimizing DNA polymerases for a broad range of tasks requires an understanding of the factors influ...
Abstract: The Bacillus fragment, belonging to a class of high-fidelity polymerases, demonstrates hig...
Polymerases are protein enzymes that move along nucleic acid chains and catalyze template-based poly...
Replicative DNA polymerases are stalled by damaged DNA while the newly discovered Y-family DNA polym...
Herein we investigate the molecular bases of DNA polymerase I conformational dynamics that underlie ...
Herein we investigate the molecular bases of DNA polymerase I conformational dynamics that underlie ...
Herein we investigate the molecular bases of DNA polymerase I conformational dynamics that underlie ...
Herein we investigate the molecular bases of DNA polymerase I conformational dynamics that underlie ...
SummaryHigh-fidelity DNA polymerases copy DNA rapidly and accurately by adding correct deoxynucleoti...
A single copy of bacteriophage T7 DNA polymerase and DNA helicase advance the replication fork with ...