<div><p>During DNA replication, DNA polymerases follow an induced fit mechanism in order to rapidly distinguish between correct and incorrect dNTP substrates. The dynamics of this process are crucial to the overall effectiveness of catalysis. Although X-ray crystal structures of DNA polymerase I with substrate dNTPs have revealed key structural states along the catalytic pathway, solution fluorescence studies indicate that those key states are populated in the absence of substrate. Herein, we report the first atomistic simulations showing the conformational changes between the closed, open, and ajar conformations of DNA polymerase I in the binary (enzyme∶DNA) state to better understand its dynamics. We have applied long time-scale, unbiased...
Nucleotide-induced conformational closing of the finger domain of DNA polymerase is crucial for its ...
Engineered DNA polymerases continue to be the workhorses of many applications in biotechnology, medi...
Engineered DNA polymerases continue to be the workhorses of many applications in biotechnology, medi...
During DNA replication, DNA polymerases follow an induced fit mechanism in order to rapidly distingu...
During DNA replication, DNA polymerases follow an induced fit mechanism in order to rapidly distingu...
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 ...
SummaryDNA polymerases must quickly and accurately distinguish between similar nucleic acids to form...
Herein we investigate the molecular bases of DNA polymerase I conformational dynamics that underlie ...
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...
DNA polymerases are a family of molecular machines involved in high-fidelity DNA replication and rep...
AbstractTo investigate whether an open-to-closed transition before the chemical step and induced-fit...
Nucleotide-induced conformational closing of the finger domain of DNA polymerase is crucial for its ...
Engineered DNA polymerases continue to be the workhorses of many applications in biotechnology, medi...
Engineered DNA polymerases continue to be the workhorses of many applications in biotechnology, medi...
During DNA replication, DNA polymerases follow an induced fit mechanism in order to rapidly distingu...
During DNA replication, DNA polymerases follow an induced fit mechanism in order to rapidly distingu...
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 ...
SummaryDNA polymerases must quickly and accurately distinguish between similar nucleic acids to form...
Herein we investigate the molecular bases of DNA polymerase I conformational dynamics that underlie ...
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...
DNA polymerases are a family of molecular machines involved in high-fidelity DNA replication and rep...
AbstractTo investigate whether an open-to-closed transition before the chemical step and induced-fit...
Nucleotide-induced conformational closing of the finger domain of DNA polymerase is crucial for its ...
Engineered DNA polymerases continue to be the workhorses of many applications in biotechnology, medi...
Engineered DNA polymerases continue to be the workhorses of many applications in biotechnology, medi...