<div><p>Incorporating the cognate instead of non-cognate substrates is crucial for DNA polymerase function. Here we analyze molecular dynamics simulations of DNA polymerase μ (pol μ) bound to different non-cognate incoming nucleotides including A:dCTP, A:dGTP, A(syn):dGTP, A:dATP, A(syn):dATP, T:dCTP, and T:dGTP to study the structure-function relationships involved with aberrant base pairs in the conformational pathway; while a pol μ complex with the A:dTTP base pair is available, no solved non-cognate structures are available. We observe distinct differences of the non-cognate systems compared to the cognate system. Specifically, the motions of active-site residue His329 and Asp330 distort the active site, and Trp436, Gln440, Glu443 and A...
AbstractDNA polymerases generally select the correct nucleotide from a pool of structurally similar ...
Herein we investigate the molecular bases of DNA polymerase I conformational dynamics that underlie ...
High-energy ultraviolet radiation damages DNA through the formation of cyclobutane pyrimidine dimers...
AbstractTo investigate whether an open-to-closed transition before the chemical step and induced-fit...
AbstractTo link conformational transitions noted for DNA polymerases with kinetic results describing...
AbstractTo link conformational transitions noted for DNA polymerases with kinetic results describing...
Optimizing DNA polymerases for a broad range of tasks requires an understanding of the factors influ...
AbstractThe nature of conformational transitions in DNA polymerase λ (pol λ), a low-fidelity DNA rep...
AbstractStructural information for mammalian DNA pol-β combined with molecular and essential dynamic...
AbstractTernary complexes of wild type or mutant form of human DNA polymerase β (pol β) bound to DNA...
AbstractDNA polymerases generally select the correct nucleotide from a pool of structurally similar ...
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 ...
AbstractDNA polymerases generally select the correct nucleotide from a pool of structurally similar ...
Herein we investigate the molecular bases of DNA polymerase I conformational dynamics that underlie ...
High-energy ultraviolet radiation damages DNA through the formation of cyclobutane pyrimidine dimers...
AbstractTo investigate whether an open-to-closed transition before the chemical step and induced-fit...
AbstractTo link conformational transitions noted for DNA polymerases with kinetic results describing...
AbstractTo link conformational transitions noted for DNA polymerases with kinetic results describing...
Optimizing DNA polymerases for a broad range of tasks requires an understanding of the factors influ...
AbstractThe nature of conformational transitions in DNA polymerase λ (pol λ), a low-fidelity DNA rep...
AbstractStructural information for mammalian DNA pol-β combined with molecular and essential dynamic...
AbstractTernary complexes of wild type or mutant form of human DNA polymerase β (pol β) bound to DNA...
AbstractDNA polymerases generally select the correct nucleotide from a pool of structurally similar ...
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 ...
AbstractDNA polymerases generally select the correct nucleotide from a pool of structurally similar ...
Herein we investigate the molecular bases of DNA polymerase I conformational dynamics that underlie ...
High-energy ultraviolet radiation damages DNA through the formation of cyclobutane pyrimidine dimers...