Scinovex
articleTop 10% cited

Molecular Similarity Indices in a Comparative Analysis (CoMSIA) of Drug Molecules to Correlate and Predict Their Biological Activity

Journal of Medicinal Chemistry · 1994 · Vol. 37(24) · pp. 4130–4146
G. KlebeUte AbrahamThomas Mietzner

Abstract

An alternative approach is reported to compute property fields based on similarity indices of drug molecules that have been brought into a common alignment. The fields of different physicochemical properties use a Gaussian-type distance dependence, and no singularities occur at the atomic positions. Accordingly, no arbitrary definitions of cutoff limits and deficiencies due to different slopes of the fields are encountered. The fields are evaluated by a PLS analysis similar to the CoMFA formalism. Two data sets of steroids binding to the corticosteroid-binding-globulin and thermolysin inhibitors were analyzed in terms of the conventional CoMFA method (Lennard-Jones and Coulomb potential fields) and the new comparative molecular similarity indices analysis (CoMSIA). Models of comparative statistical significance were obtained. Field contribution maps were produced for the different models. Due to cutoff settings in the CoMFA fields and the steepness of the potentials close to the molecular surface, the CoMFA maps are often rather fragmentary and not contiguously connected. This makes their interpretation difficult. The maps obtained by the new CoMSIA approach are superior and easier to interpret. Whereas the CoMFA maps denote regions apart from the molecules where interactions with a putative environment are to be expected, the CoMSIA maps highlight those regions within the area occupied by the ligand skeletons that require a particular physicochemical property important for activity. This is a more significant guide to trace the features that really matter especially with respect to the design of novel compounds.

Computational Drug Discovery MethodsChemical Thermodynamics and Molecular StructureAnalytical Chemistry and ChromatographyChemistrySimilarity (geometry)Computational chemistryCutoffQuantitative structure–activity relationshipChemical similarityStereochemistryStructural similarityPhysicsArtificial intelligence

MeSH terms

Models, MolecularMolecular ConformationSteroidsStructure-Activity RelationshipThermolysin
Citations
1,805
FWCI
5.58
field-weighted impact
References
0
Percentile
97%
vs. same field & year
Citations per year
Cited by
QSAR Modeling: Where Have You Been? Where Are You Going To?
Journal of Medicinal Chemistry · 2013 · 1,986 citations
Molecular similarity: a key technique in molecular informatics
Organic & Biomolecular Chemistry · 2004 · 615 citations
Citation Network

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