Scinovex
articleTop 1% cited

Merck molecular force field. I. Basis, form, scope, parameterization, and performance of MMFF94

Journal of Computational Chemistry · 1996 · Vol. 17(5-6) · pp. 490–519
Thomas A. Halgren

Abstract

This article introduces MMFF94, the initial published version of the Merck molecular force field (MMFF). It describes the objectives set for MMFF, the form it takes, and the range of systems to which it applies. This study also outlines the methodology employed in parameterizing MMFF94 and summarizes its performance in reproducing computational and experimental data. Though similar to MM3 in some respects, MMFF94 differs in ways intended to facilitate application to condensed-phase processes in molecular-dynamics simulations. Indeed, MMFF94 seeks to achieve MM3-like accuracy for small molecules in a combined “organic/protein” force field that is equally applicable to proteins and other systems of biological significance. A second distinguishing feature is that the core portion of MMFF94 has primarily been derived from high-quality computational data—ca. 500 molecular structures optimized at the HF/6-31G* level, 475 structures optimized at the MP2/6-31G* level, 380 MP2/6-31G* structures evaluated at a defined approximation to the MP4SDQ/TZP level, and 1450 structures partly derived from MP2/6-31G* geometries and evaluated at the MP2/TZP level. A third distinguishing feature is that MMFF94 has been parameterized for a wide variety of chemical systems of interest to organic and medicial chemists, including many that feature frequently occurring combinations of functional groups for which little, if any, useful experimental data are available. The methodology used in parameterizing MMFF94 represents a fourth distinguishing feature. Rather than using the common “functional group” approach, nearly all MMFF parameters have been determined in a mutually consistent fashion from the full set of available computational data. MMFF94 reproduces the computational data used in its parameterization very well. In addition, MMFF94 reproduces experimental bond lengths (0.014 Å root mean square [rms]), bond angles (1.2° rms), vibrational frequencies (61 cm−1 rms), conformational energies (0.38 kcal/mol/rms), and rotational barriers (0.39 kcal/mol rms) very nearly as well as does MM3 for comparable systems. MMFF94 also describes intermolecular interactions in hydrogen-bonded systems in a way that closely parallels that given by the highly regarded OPLS force field. © 1996 John Wiley & Sons, Inc.

Protein Structure and DynamicsAdvanced Chemical Physics StudiesSpectroscopy and Quantum Chemical StudiesParameterized complexityFeature (linguistics)Computer scienceForce field (fiction)Field (mathematics)Set (abstract data type)Variety (cybernetics)Scope (computer science)Computational chemistryMolecular dynamics
Citations
5,215
FWCI
12.09
field-weighted impact
References
62
Percentile
99%
vs. same field & year
Citations per year
References
Conformational analysis—CI
Tetrahedron · 1974 · 964 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
Gaussian-2 theory for molecular energies of first- and second-row compounds
The Journal of Chemical Physics · 1991 · 3,430 citations
UFF, a full periodic table force field for molecular mechanics and molecular dynamics simulations
Journal of the American Chemical Society · 1992 · 10,193 citations
Molecular mechanics. The MM3 force field for hydrocarbons. 1
Journal of the American Chemical Society · 1989 · 2,801 citations
DREIDING: a generic force field for molecular simulations
The Journal of Physical Chemistry · 1990 · 6,462 citations
Citation Network

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