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Pharmakophor-Modellierung×Homologiemodellierung×Molekulardocking×
FachgebietBioinformatikBioinformatikBioinformatik
FamilieProcess / pipelineProcess / pipelineProcess / pipeline
Entstehungsjahr197719931982
UrheberPeter GundAndrej SaliIrwin Kuntz
TypPattern-based virtual screening pipelineComparative structure prediction pipelineBinding prediction pipeline
Wegweisende QuelleWermuth, C. G., Ganellin, C. R., Lindberg, P., & Mitscher, L. A. (1998). Glossary of terms used in medicinal chemistry. Pure and Applied Chemistry, 70(5), 1129-1143. DOI ↗Sali, A. & Blundell, T. L. (1993). Comparative protein modelling by satisfaction of spatial restraints. Journal of Molecular Biology, 234(3), 779-815. DOI ↗Kuntz, I. D., Blaney, J. M., Oatley, S. J., Langridge, R., & Ferrin, T. E. (1982). A geometric approach to macromolecule-ligand interactions. Journal of Molecular Biology, 161(2), 269-288. DOI ↗
Aliasnamenpharmacophore pattern recognition, 3D pharmacophorecomparative modeling, template-based modelingprotein-ligand docking, binding prediction
Verwandt344
ZusammenfassungPharmacophore modeling identifies the spatial arrangement of molecular features (hydrogen bond donors, acceptors, aromatic rings) that are essential for biological activity. Introduced by Gund in 1977, this ligand-based method creates a three-dimensional pattern that can screen chemical libraries and design new active compounds without requiring receptor structure.Homology modeling, also called comparative modeling, predicts the three-dimensional structure of a protein using an experimentally-solved structure of a homologous protein as a template. Introduced by Sali and Blundell in 1993, this method exploits the principle that homologous proteins share similar spatial structures despite differing in amino acid sequence.Molecular docking predicts the preferred binding orientation and affinity of a ligand (small molecule) within a protein binding pocket. Pioneered by Kuntz and colleagues in 1982, this computational method searches conformational space to find energetically favorable ligand-protein complexes, enabling rapid screening of chemical libraries for drug discovery.
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ScholarGateMethoden vergleichen: Pharmacophore Modeling · Homology Modeling · Molecular Docking. Abgerufen am 2026-06-19 von https://scholargate.app/de/compare