Content area

Abstract

Computational docking can be used to predict bound conformations and free energies of binding for small-molecule ligands to macromolecular targets. Docking is widely used for the study of biomolecular interactions and mechanisms, and it is applied to structure-based drug design. The methods are fast enough to allow virtual screening of ligand libraries containing tens of thousands of compounds. This protocol covers the docking and virtual screening methods provided by the AutoDock suite of programs, including a basic docking of a drug molecule with an anticancer target, a virtual screen of this target with a small ligand library, docking with selective receptor flexibility, active site prediction and docking with explicit hydration. The entire protocol will require ∼5 h.

Details

Title
Computational protein-ligand docking and virtual drug screening with the AutoDock suite
Author
Forli, Stefano; Huey, Ruth; Pique, Michael E; Sanner, Michel F; Goodsell, David S; Olson, Arthur J
Pages
905-919
Publication year
2016
Publication date
May 2016
Publisher
Nature Publishing Group
ISSN
17542189
e-ISSN
17502799
Source type
Scholarly Journal
Language of publication
English
ProQuest document ID
1784048275
Copyright
Copyright Nature Publishing Group May 2016