A Semiempirical Quantum Model for Hydrogen-Bonded Nucleic Acid Base Pairs
- 13 September 2005
- journal article
- research article
- Published by American Chemical Society (ACS) in Journal of Chemical Theory and Computation
- Vol. 1 (6), 1275-1285
- https://doi.org/10.1021/ct050102l
Abstract
An exploratory semiempirical Hamiltonian (PM3(BP)) is developed to model hydrogen bonding in nucleic acid base pairs. The PM3(BP) Hamiltonian is a novel reparametrization of the PM3 Hamiltonian designed to reproduce experimental base pair dimer enthalpies and highlevel density-functional results. The parametrization utilized a suite of integrated nonlinear optimization algorithms interfaced with a d-orbital semiempirical program. Results are compared with experimental values and with benchmark density-functional (mPWPW91/MIDI!) calculations for hydrogen-bonded nucleic acid dimers and trimers. The PM3(BP) Hamiltonian is demonstrated to outperform the AM1, PM3, MNDO, and MNDO/H Hamiltonians for climer and trimer structures and interaction enthalpies and is shown to reproduce experimental climer interaction enthalpies that rival density-functional results for an over 3 orders of magnitude reduction in computational cost. The tradeoff between a high accuracy gain for hydrogen bonding at the expense of sacrificing some generality is discussed. These results provide insight into the limits of conventional semiempirical forms for accurate modeling of biological interactions.This publication has 60 references indexed in Scilit:
- Spectroscopically-tested, improved, semi-empirical potentials for biological molecules: Calculations for glycine, alanine and prolineElectronic supplementary information (ESI) available: Geometries (MP2 and PM3) of alanine, glycine and proline conformers I and II. See http://www.rsc.org/suppdata/cp/b3/b315326f/Physical Chemistry Chemical Physics, 2004
- Does a Stacked DNA Base Pair Hydrate Better than a Hydrogen-Bonded One?: An ab Initio StudyThe Journal of Physical Chemistry A, 2000
- AM1/d Parameters for MolybdenumThe Journal of Physical Chemistry A, 2000
- A Self-Consistent Charge Density-Functional Based Tight-Binding Scheme for Large BiomoleculesPhysica Status Solidi (b), 2000
- Exchange functionals with improved long-range behavior and adiabatic connection methods without adjustable parameters: The mPW and mPW1PW modelsThe Journal of Chemical Physics, 1998
- Extension of the MNDO formalism tod orbitals: Integral approximations and preliminary numerical resultsTheoretical Chemistry Accounts, 1992
- Dimers, trimers, and tetramers of cytosine with guanineJournal of the American Chemical Society, 1989
- RNA double-helical fragments at atomic resolution: II. The crystal structure of sodium guanylyl-3′,5′-cytidine nonahydrateJournal of Molecular Biology, 1976
- RNA double-helical fragments at atomic resolution: I. The crystal and molecular structure of sodium adenylyl-3′,5′-uridine hexahydrateJournal of Molecular Biology, 1976
- Theoretical studies of enzymic reactions: Dielectric, electrostatic and steric stabilization of the carbonium ion in the reaction of lysozymeJournal of Molecular Biology, 1976