A reparameterization of the torsional parameters for the glycosidic dihedral angle, χ, for the AMBER99 force field in RNA nucleosides is used to provide a modified force field, AMBER99χ. Molecular dynamics simulations of cytidine, uridine, adenosine, and guanosine in aqueous solution using the AMBER99 and AMBER99χ force fields are compared with NMR results. For each nucleoside and force field, 10 individual molecular dynamics simulations of 30 ns each were run. For cytidine with AMBER99χ force field, each molecular dynamics simulation time was extended to 120 ns for convergence purposes. Nuclear magnetic resonance (NMR) spectroscopy, including one-dimensional (1D) <sup>1</sup>H, steady-state 1D <sup>1</sup>H nuclear Overhauser effect (NOE),...
Significant improvements have been made to the OPLS-AA force field for modeling RNA. New torsional p...
The computational study of conformational transitions in nucleic acids still faces many challenges. ...
Classical force fields are the core of classical simulations, particularly of molecular dynamics (MD...
Abstract: A reparameterization of the torsional parameters for the glycosidic dihedral angle, , for ...
We report a reparameterization of the glycosidic torsion χ of the Cornell et al. AMBER force field f...
The currently available force field parameters for modified RNA residues in AMBER show significant d...
The currently available force field parameters for modified RNA residues in AMBER show significant d...
The currently available force field parameters for modified RNA residues in AMBER show significant d...
The widespread occurrence of modified residues in RNA sequences necessitates development of accurate...
The widespread occurrence of modified residues in RNA sequences necessitates development of accurate...
The widespread occurrence of modified residues in RNA sequences necessitates development of accurate...
The widespread occurrence of modified residues in RNA sequences necessitates development of accurate...
Accurately modeling unpaired regions of RNA is important for predicting structure, dynamics, and the...
With current advancements in RNA based therapeutics, it is becoming crucial to utilize theoretical a...
Thesis (Ph. D.)--University of Rochester. Department of Physics and Astronomy, 2016.RNA was believed...
Significant improvements have been made to the OPLS-AA force field for modeling RNA. New torsional p...
The computational study of conformational transitions in nucleic acids still faces many challenges. ...
Classical force fields are the core of classical simulations, particularly of molecular dynamics (MD...
Abstract: A reparameterization of the torsional parameters for the glycosidic dihedral angle, , for ...
We report a reparameterization of the glycosidic torsion χ of the Cornell et al. AMBER force field f...
The currently available force field parameters for modified RNA residues in AMBER show significant d...
The currently available force field parameters for modified RNA residues in AMBER show significant d...
The currently available force field parameters for modified RNA residues in AMBER show significant d...
The widespread occurrence of modified residues in RNA sequences necessitates development of accurate...
The widespread occurrence of modified residues in RNA sequences necessitates development of accurate...
The widespread occurrence of modified residues in RNA sequences necessitates development of accurate...
The widespread occurrence of modified residues in RNA sequences necessitates development of accurate...
Accurately modeling unpaired regions of RNA is important for predicting structure, dynamics, and the...
With current advancements in RNA based therapeutics, it is becoming crucial to utilize theoretical a...
Thesis (Ph. D.)--University of Rochester. Department of Physics and Astronomy, 2016.RNA was believed...
Significant improvements have been made to the OPLS-AA force field for modeling RNA. New torsional p...
The computational study of conformational transitions in nucleic acids still faces many challenges. ...
Classical force fields are the core of classical simulations, particularly of molecular dynamics (MD...