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Dynamic undocking: A novel method for structure-based drug discovery
Majewski, M.
;
Ruiz-Carmona, S.
;
Barril, X.
English Chapter (Chapter in Book) Scientific
Published:
Thomas Mavromoustakos. Rational Drug Design: Methods and Protocols. (2018) ISBN:9781493993475
pp. 195-216
Identifiers
MTMT: 30371003
DOI:
10.1007/978-1-4939-8630-9_11
WoS:
000452989900012
Scopus:
85051180935
Computer-aided methods have been broadly used in pharmaceutical research to identify potential ligands and design effective therapeutics. Most of the approaches rely on the binding affinity prediction and approximate thermodynamic properties of the system. Our alternative approach focuses on structural stability, provided by native protein-ligand interactions, in particular hydrogen bonds. Based on this idea, we designed new fast computational method, called dynamic undocking (DUck), that evaluates stability by calculating the work necessary to break the most important native contact in a ligand-receptor complex. This property is effective in distinguishing true ligands from decoys and is orthogonal to currently existing docking methods, thus making it exceptionally useful in virtual screening. Here, we present a protocol suitable for DUck’s application in drug design strategy, as well as notes that will help to solve common problems addressed by users. © Springer Science+Business Media, LLC, part of Springer Nature 2018.
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2025-04-24 20:11
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