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Development and Testing of the OPLS-AA/M Force Field for RNA
- Source :
- Journal of Chemical Theory and Computation. 15:2734-2742
- Publication Year :
- 2019
- Publisher :
- American Chemical Society (ACS), 2019.
-
Abstract
- Significant improvements have been made to the OPLS-AA force field for modeling RNA. New torsional potentials were optimized based on density functional theory (DFT) scans at the ωB97X-D/6-311++G(d,p) level for potential energy surfaces of the backbone α and γ dihedral angles. In combination with previously reported improvements for the sugar puckering and glycosidic torsion terms, the new force field was validated through diverse molecular dynamics simulations for RNAs in aqueous solution. Results for dinucleotides and tetranucleotides revealed both accurate reproduction of 3 J couplings from NMR and the avoidance of several unphysical states observed with other force fields. Simulations of larger systems with noncanonical motifs showed significant structural improvements over the previous OPLS-AA parameters. The new force field, OPLS-AA/M, is expected to perform competitively with other recent RNA force fields and to be compatible with OPLS-AA models for proteins and small molecules.
- Subjects :
- Physics
Base Sequence
010304 chemical physics
OPLS
Oligonucleotides
Water
RNA
Torsion (mechanics)
Molecular Dynamics Simulation
Dihedral angle
01 natural sciences
Potential energy
Article
Force field (chemistry)
Computer Science Applications
Solutions
Molecular dynamics
Chemical physics
0103 physical sciences
Nucleic Acid Conformation
Quantum Theory
Thermodynamics
Density functional theory
Physical and Theoretical Chemistry
Subjects
Details
- ISSN :
- 15499626 and 15499618
- Volume :
- 15
- Database :
- OpenAIRE
- Journal :
- Journal of Chemical Theory and Computation
- Accession number :
- edsair.doi.dedup.....7e606ff3aa57decf31d87b02302fe973
- Full Text :
- https://doi.org/10.1021/acs.jctc.9b00054