Kinetic Characterization of Fragment Binding in AmpC β‑Lactamase by High-Throughput Molecular Simulations

Small molecules used in fragment-based drug discovery form multiple, promiscuous binding complexes difficult to capture experimentally. Here, we identify such binding poses and their associated energetics and kinetics using molecular dynamics simulations on AmpC β-lactamase. Only one of the crystall...

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Veröffentlicht in:Journal of chemical information and modeling 2014-02, Vol.54 (2), p.362-366
Hauptverfasser: Bisignano, P, Doerr, S, Harvey, M. J, Favia, A. D, Cavalli, A, De Fabritiis, G
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Sprache:eng
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Zusammenfassung:Small molecules used in fragment-based drug discovery form multiple, promiscuous binding complexes difficult to capture experimentally. Here, we identify such binding poses and their associated energetics and kinetics using molecular dynamics simulations on AmpC β-lactamase. Only one of the crystallographic binding poses was found to be thermodynamically favorable; however, the ligand shows several binding poses within the pocket. This study demonstrates free-binding molecular simulations in the context of fragment-to-lead development and its potential application in drug design.
ISSN:1549-9596
1549-960X
DOI:10.1021/ci4006063