articleTop 1% cited
<scp>CHARMM</scp>: A program for macromolecular energy, minimization, and dynamics calculations
Journal of Computational Chemistry · 1983 · Vol. 4(2) · pp. 187–217
Bernard R. Brooks✉(National Postdoctoral Association)Robert E. Bruccoleri(Harvard University)Barry D. Olafson(National Institutes of Health)David J. States(Harvard University)S. Swaminathan(Harvard University)Martin Karplus(Harvard University)
Abstract
Abstract CHARMM ( C hemistry at HAR vard M acromolecular M echanics) is a highly flexible computer program which uses empirical energy functions to model macromolecular systems. The program can read or model build structures, energy minimize them by first‐ or second‐derivative techniques, perform a normal mode or molecular dynamics simulation, and analyze the structural, equilibrium, and dynamic properties determined in these calculations. The operations that CHARMM can perform are described, and some implementation details are given. A set of parameters for the empirical energy function and a sample run are included.
Protein Structure and DynamicsEnzyme Structure and FunctionMass Spectrometry Techniques and ApplicationsComputer scienceMolecular dynamicsStatistical physicsComputational chemistryChemistryPhysics
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References
Theoretical studies of enzymic reactions: Dielectric, electrostatic and steric stabilization of the carbonium ion in the reaction of lysozyme
Journal of Molecular Biology · 1976 · 4,462 citations
The interpretation of protein structures: Estimation of static accessibility
Journal of Molecular Biology · 1971 · 5,866 citations
Method for estimating the configurational entropy of macromolecules
Macromolecules · 1981 · 860 citations
Stereochemistry of polypeptide chain configurations
Journal of Molecular Biology · 1963 · 3,528 citations
An algorithm for the machine calculation of complex Fourier series
Mathematics of Computation · 1965 · 12,024 citations
A general method applicable to the search for similarities in the amino acid sequence of two proteins
Journal of Molecular Biology · 1970 · 11,386 citations
Algorithms for macromolecular dynamics and constraint dynamics
Molecular Physics · 1977 · 1,734 citations
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