4.5 Article

The Importance of Hydration Thermodynamics in Fragment-to-Lead Optimization

Journal

CHEMMEDCHEM
Volume 9, Issue 12, Pages 2708-2717

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/cmdc.201402207

Keywords

druggability; fragment-based drug design; hot spot; hydrophobic effect; protein hydration thermodynamics

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Using a computational approach to assess changes in solvation thermodynamics upon ligand binding, we investigated the effects of water molecules on the binding energetics of over 20 fragment hits and their corresponding optimized lead compounds. Binding activity and X-ray crystallographic data of published fragment-to-lead optimization studies from various therapeutically relevant targets were studied. The analysis reveals a distinct difference between the thermodynamic profile of water molecules displaced by fragment hits and those displaced by the corresponding optimized lead compounds. Specifically, fragment hits tend to displace water molecules with notably unfavorable excess entropiesconfigurationally constrained water moleculesrelative to those displaced by the newly added moieties of the lead compound during the course of fragment-to-lead optimization. Herein we describe the details of this analysis with the goal of providing practical guidelines for exploiting thermodynamic signatures of binding site water molecules in the context of fragment-to-lead optimization.

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