Scinovex
reviewTop 1% cited

Empirical force fields for biological macromolecules: Overview and issues

Journal of Computational Chemistry · 2004 · Vol. 25(13) · pp. 1584–1604
Alexander D. MacKerell

Abstract

Empirical force field-based studies of biological macromolecules are becoming a common tool for investigating their structure-activity relationships at an atomic level of detail. Such studies facilitate interpretation of experimental data and allow for information not readily accessible to experimental methods to be obtained. A large part of the success of empirical force field-based methods is the quality of the force fields combined with the algorithmic advances that allow for more accurate reproduction of experimental observables. Presented is an overview of the issues associated with the development and application of empirical force fields to biomolecular systems. This is followed by a summary of the force fields commonly applied to the different classes of biomolecules; proteins, nucleic acids, lipids, and carbohydrates. In addition, issues associated with computational studies on "heterogeneous" biomolecular systems and the transferability of force fields to a wide range of organic molecules of pharmacological interest are discussed.

Protein Structure and DynamicsDNA and Nucleic Acid ChemistryForce Microscopy Techniques and ApplicationsTransferabilityBiomoleculeForce field (fiction)Computer scienceField (mathematics)Biochemical engineeringMacromoleculeNanotechnologyChemistryArtificial intelligence

MeSH terms

AlgorithmsCarbohydratesComputer SimulationLipidsModels, MolecularNucleic AcidsProteinsStructure-Activity RelationshipThermodynamicsMacromolecular SubstancesStatic Electricity
Citations
1,272
FWCI
15.13
field-weighted impact
References
317
Percentile
100%
vs. same field & year
Citations per year
References
Constant pressure molecular dynamics algorithms
The Journal of Chemical Physics · 1994 · 5,747 citations
New spherical‐cutoff methods for long‐range forces in macromolecular simulation
Journal of Computational Chemistry · 1994 · 1,149 citations
Comparison of simple potential functions for simulating liquid water
The Journal of Chemical Physics · 1983 · 41,376 citations
A new force field for molecular mechanical simulation of nucleic acids and proteins
Journal of the American Chemical Society · 1984 · 4,632 citations
Ewald summation techniques in perspective: a survey
Computer Physics Communications · 1996 · 872 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.