Journal of Chemical Information and Computer Sciences · 1996 · 632 citations · 18 references
EngineeringHit IdentificationCompound SelectionCompound ClassStructure-based Clustering MethodsSystem PharmacologyChemistrySystems PharmacologyMolecular PharmacologyMedicinal ChemistryData MiningBioanalysisStructure ElucidationAnalytical ChemistryBiostatisticsMolecular RecognitionDrug AnalysisStructure−activity DataKnowledge DiscoveryMaccs DescriptorsChemometricsBiomedical AnalysisPharmacologyMolecular ModelingBiomolecular ScienceBiomolecular EngineeringComputational BiologyRational Drug DesignStructure DiscoveryMedicineDrug DiscoveryPharmaceutical ResearchQuantitative Pharmacology
The study evaluates various structure‑based clustering methods for selecting compounds. The authors compare 2D descriptors (MACCS, Unity, Daylight) and 3D descriptors (Unity rigid/flexible and two in‑house pharmacophore‑based) with Ward, group‑average, Guénoche, and Jarvis‑Patrick clustering algorithms. 2D descriptors combined with hierarchical clustering, particularly MACCS with Ward’s method, most effectively separate active from inactive compounds.
An evaluation of a variety of structure-based clustering methods for use in compound selection is presented. The use of MACCS, Unity and Daylight 2D descriptors; Unity 3D rigid and flexible descriptors and two in-house 3D descriptors based on potential pharmacophore points, are considered. The use of Ward's and group-average hierarchical agglomerative, Guénoche hierarchical divisive, and Jarvis−Patrick nonhierarchical clustering methods are compared. The results suggest that 2D descriptors and hierarchical clustering methods are best at separating biologically active molecules from inactives, a prerequisite for a good compound selection method. In particular, the combination of MACCS descriptors and Ward's clustering was optimal.
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Peter Willett, Vivienne Winterman · Quantitative Structure-Activity Relationships · 1986 · 202 citations
Molecular Characterization, Structural Bioinformatics, Medicine +15