ChemistryBiologyMedicine

P. Kollman, I. Massova, Carolina Reyes, B. Kuhn, Shuanghong Huo, L. Chong, Matthew Lee, Tai-Sung Lee, Y. Duan, Wei Wang, O. Donini, P. Cieplak, Jaysharee Srinivasan, D. Case, T. Cheatham

2000.10.4ACCOUNTS OF CHEMICAL RESEARCH

DOI: 10.1021/ar000033j

tlooto Summary

A historical perspective on the application of molecular dynamics to biological macromolecules is presented and recent developments combining state-of-the-art force fields with continuum solvation calculations have allowed for the fourth era of MD applications in which one can often derive both accurate structure and accurate relative free energies from molecular dynamics trajectories.

Abstract

A historical perspective on the application of molecular dynamics (MD) to biological macromolecules is presented. Recent developments combining state-of-the-art force fields with continuum solvation calculations have allowed us to reach the fourth era of MD applications in which one can often derive both accurate structure and accurate relative free energies from molecular dynamics trajectories. We illustrate such applications on nucleic acid duplexes, RNA hairpins, protein folding trajectories, and protein-ligand, protein-protein, and protein-nucleic acid interactions.

Citation format

KOLLMAN, P., et al. Calculating structures and free energies of complex molecules: Combining molecular mechanics and continuum models. ACCOUNTS OF CHEMICAL RESEARCH, 2000, 33 12: 889–97.