In traditional molecular mechanics force fields, intramolecular non-bonded interactions are modelled as intermolecular interactions, and the form of the torsion potential is based on the conformational profiles of small organic molecules. We investigate how a separate model for the intramolecular forces in pharmaceuticals could be more realistic by analysing the low barrier to rotation of the phenyl ring in the fenamates (substituted N-phenyl-aminobenzoic acids), that results in a wide range of observed angles in the numerous fenamate crystal structures. Although the conformational energy changes by significantly less than 10 kJmol-1 for a complete rotation of the phenyl ring for fenamic acid, the barrier is only small because of small corr...
A rapid method to parameterize the intramolecular component of classical force fields for complex co...
YesThe optimisation of a peptide-capped glycine using the novel force field FFLUX is presented. FFLU...
When employing molecular dynamics (MD) simulations for computer-aided drug design, the quality of th...
This thesis pioneers the development of non-empirical anisotropic atom-atom force-fields for organic...
The accuracy of molecular mechanics force fields (FF) reveals critical for applications where precis...
Computer simulation increasingly complements experimental efforts to describe nanoscale structure fo...
Computational chemists use structure-based drug design and molecular dynamics of drug/protein comple...
Drug-like ligands obtained from protein–ligand complexes deposited in the Protein Databank were subj...
We have carried out a large scale computational investigation to assess the utility of common small-...
Studies of drug–membrane interactions witness an ever-growing interest, as penetration, accumulation...
Many molecular simulation methods use force fields to help model and simulate molecules and their be...
Author Institution: Department of Chemistry, Purdue University, West Lafayette, Indiana 47907; Camb...
Classical intermolecular potentials typically require an extensive parametrization procedure for any...
The interactions between amino acid side chains govern protein secondary, tertiary; and quaternary s...
Here, we compare the relative performances of different force fields for conformational searching of...
A rapid method to parameterize the intramolecular component of classical force fields for complex co...
YesThe optimisation of a peptide-capped glycine using the novel force field FFLUX is presented. FFLU...
When employing molecular dynamics (MD) simulations for computer-aided drug design, the quality of th...
This thesis pioneers the development of non-empirical anisotropic atom-atom force-fields for organic...
The accuracy of molecular mechanics force fields (FF) reveals critical for applications where precis...
Computer simulation increasingly complements experimental efforts to describe nanoscale structure fo...
Computational chemists use structure-based drug design and molecular dynamics of drug/protein comple...
Drug-like ligands obtained from protein–ligand complexes deposited in the Protein Databank were subj...
We have carried out a large scale computational investigation to assess the utility of common small-...
Studies of drug–membrane interactions witness an ever-growing interest, as penetration, accumulation...
Many molecular simulation methods use force fields to help model and simulate molecules and their be...
Author Institution: Department of Chemistry, Purdue University, West Lafayette, Indiana 47907; Camb...
Classical intermolecular potentials typically require an extensive parametrization procedure for any...
The interactions between amino acid side chains govern protein secondary, tertiary; and quaternary s...
Here, we compare the relative performances of different force fields for conformational searching of...
A rapid method to parameterize the intramolecular component of classical force fields for complex co...
YesThe optimisation of a peptide-capped glycine using the novel force field FFLUX is presented. FFLU...
When employing molecular dynamics (MD) simulations for computer-aided drug design, the quality of th...