AbstractTo link conformational transitions noted for DNA polymerases with kinetic results describing catalytic efficiency and fidelity, we investigate the role of key DNA polymerase β residues on subdomain motion through simulations of five single-residue mutants: Arg-283-Ala, Tyr-271-Ala, Asp-276-Val, Arg-258-Lys, and Arg-258-Ala. Since a movement toward a closed state was only observed for R258A, we suggest that Arg258 is crucial in modulating motion preceding chemistry. Analyses of protein/DNA interactions in the mutant active site indicate distinctive hydrogen bonding and van der Waals patterns arising from compensatory structural adjustments. By comparing closed mutant complexes with the wild-type enzyme, we interpret experimentally de...
AbstractTernary complexes of wild type or mutant form of human DNA polymerase β (pol β) bound to DNA...
DNA polymerases are known to be responsible for the replication and maintenance of an organism’s gen...
SummaryDNA polymerases occasionally insert the wrong nucleotide. For this error to become a mutation...
AbstractTo link conformational transitions noted for DNA polymerases with kinetic results describing...
AbstractThe nature of conformational transitions in DNA polymerase λ (pol λ), a low-fidelity DNA rep...
Herein we investigate the molecular bases of DNA polymerase I conformational dynamics that underlie ...
AbstractStructural information for mammalian DNA pol-β combined with molecular and essential dynamic...
AbstractTo investigate whether an open-to-closed transition before the chemical step and induced-fit...
SummaryDNA polymerase (pol) β is a model polymerase involved in gap-filling DNA synthesis utilizing ...
AbstractDNA polymerases generally select the correct nucleotide from a pool of structurally similar ...
DNA polymerase β (pol β) is a bifunctional enzyme widely studied for its roles in base excision DNA ...
DNA polymerase β (pol β) is a bifunctional enzyme widely studied for its roles in base excision DNA ...
DNA polymerases are known to be responsible for the replication and maintenance of an organism’s gen...
SummaryDNA polymerase and substrate conformational changes are essential for high-fidelity DNA synth...
SummaryDNA polymerases must quickly and accurately distinguish between similar nucleic acids to form...
AbstractTernary complexes of wild type or mutant form of human DNA polymerase β (pol β) bound to DNA...
DNA polymerases are known to be responsible for the replication and maintenance of an organism’s gen...
SummaryDNA polymerases occasionally insert the wrong nucleotide. For this error to become a mutation...
AbstractTo link conformational transitions noted for DNA polymerases with kinetic results describing...
AbstractThe nature of conformational transitions in DNA polymerase λ (pol λ), a low-fidelity DNA rep...
Herein we investigate the molecular bases of DNA polymerase I conformational dynamics that underlie ...
AbstractStructural information for mammalian DNA pol-β combined with molecular and essential dynamic...
AbstractTo investigate whether an open-to-closed transition before the chemical step and induced-fit...
SummaryDNA polymerase (pol) β is a model polymerase involved in gap-filling DNA synthesis utilizing ...
AbstractDNA polymerases generally select the correct nucleotide from a pool of structurally similar ...
DNA polymerase β (pol β) is a bifunctional enzyme widely studied for its roles in base excision DNA ...
DNA polymerase β (pol β) is a bifunctional enzyme widely studied for its roles in base excision DNA ...
DNA polymerases are known to be responsible for the replication and maintenance of an organism’s gen...
SummaryDNA polymerase and substrate conformational changes are essential for high-fidelity DNA synth...
SummaryDNA polymerases must quickly and accurately distinguish between similar nucleic acids to form...
AbstractTernary complexes of wild type or mutant form of human DNA polymerase β (pol β) bound to DNA...
DNA polymerases are known to be responsible for the replication and maintenance of an organism’s gen...
SummaryDNA polymerases occasionally insert the wrong nucleotide. For this error to become a mutation...