Liebe Besucherinnen und Besucher,
aufgrund unseres Sommerfestes sind wir am 03. September 2026 bis 14 Uhr erreichbar. Am 04. September 2026 sind wir wieder wie gewohnt für Sie da. Vielen Dank für Ihr Verständnis.
Ihr Team von Sack Fachmedien
Buch, Englisch, 327 Seiten, Format (B × H): 183 mm x 260 mm, Gewicht: 845 g
Reihe: Methods in Molecular Biology
Buch, Englisch, 327 Seiten, Format (B × H): 183 mm x 260 mm, Gewicht: 845 g
Reihe: Methods in Molecular Biology
ISBN: 978-1-0716-1208-8
Verlag: Humana
Authoritative and cutting-edge, Protein-Ligand Interactions and Drug Design provides detailed practical procedures of solid computer-aided drug design methodologies employed to rationalize and optimize protein-ligand interactions, for experienced researchers and novices alike.
Zielgruppe
Professional/practitioner
Autoren/Hrsg.
Fachgebiete
- Naturwissenschaften Chemie Chemie Allgemein Chemometrik, Chemoinformatik
- Medizin | Veterinärmedizin Medizin | Public Health | Pharmazie | Zahnmedizin Medizinische Fachgebiete Pharmakologie, Toxikologie
- Naturwissenschaften Chemie Physikalische Chemie Quantenchemie, Theoretische Chemie
- Medizin | Veterinärmedizin Medizin | Public Health | Pharmazie | Zahnmedizin Pharmazie
Weitere Infos & Material
Investigation of the Click-Chemical Space for Drug Design Using ZINClick.- Molecular Scaffold Hopping via Holistic Molecular Representation.- Biased Docking for Protein-Ligand Pose Prediction.- Binding Mode Prediction and Virtual Screening Applications by Covalent Docking.- Ligand-Receptor, Ligand-DNA Interactions and Drug Design.- Simulation of Ligand Transport in Receptors Using CaverDock.- Negative Image-Based Screening: Rigid Docking Using Cavity Information.- Negative Image-Based Rescoring: Using Cavity Information to Improve Docking Screening.- Fragment-Based Drug Design of Selective HDAC6 Inhibitors.- A Protocol to Use Comparative Binding Energy Analysis to Estimate Drug-Target Residence Time.- Dynamic Docking Using Multicanonical Molecular Dynamics: Simulating Complex Formation at the Atomistic Level.- Free Energy Calculations for Protein-Ligand Binding Prediction.- Exploiting Water Dynamics for Pharmacophore Screening.- Markov State Models to Elucidate Ligand Binding Mechanism.- From Homology Modeling to the Hit Identification and Drug Repurposing: A Structure-Based Approach in the Discovery of Novel Potential Anti-Obesity Compounds.- Multiple Target Drug Design Using LigBuilder 3.- Bionoi: A Voronoi Diagram-Based Representation of Ligand-Binding Sites in Proteins for Machine Learning Applications.- MDock: A Suite for Molecular Inverse Docking and Target Prediction.




