Motifs for molecular recognition exploiting hydrophobic enclosure in protein–ligand binding

Columbia University

PubMed
Indexed incrossrefpubmed

Abstract

The thermodynamic properties and phase behavior of water in confined regions can vary significantly from that observed in the bulk. This is particularly true for systems in which the confinement is on the molecular-length scale. In this study, we use molecular dynamics simulations and a powerful solvent analysis technique based on inhomogenous solvation theory to investigate the properties of water molecules that solvate the confined regions of protein active sites. Our simulations and analysis indicate that the solvation of protein active sites that are characterized by hydrophobic enclosure and correlated hydrogen bonds induce atypical entropic and enthalpic penalties of hydration. These penalties apparently…

Citation impact

703
total citations
FWCI
7.59
Percentile
100%
References
30
Citations per year

Authors

5

Topics & keywords

Keywords
  • Solvation
  • Affinities
  • Hydrogen bond
  • Ligand (biochemistry)
  • Chemistry
  • Chemical physics
  • Molecular dynamics
  • Hydrophobic effect
UN Sustainable Development Goals
  • Clean water and sanitation
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