Hydrophobic regions on protein surfaces

Authors
Citation
F. Eisenhaber, Hydrophobic regions on protein surfaces, PERSP DR D, 17(1), 1999, pp. 27-42
Citations number
105
Categorie Soggetti
Pharmacology & Toxicology
Journal title
PERSPECTIVES IN DRUG DISCOVERY AND DESIGN
ISSN journal
09282866 → ACNP
Volume
17
Issue
1
Year of publication
1999
Pages
27 - 42
Database
ISI
SICI code
0928-2866(1999)17:1<27:HROPS>2.0.ZU;2-M
Abstract
Changes in solvation of ligand and receptor molecules during docking contri bute essentially to the total energy of the binding process. In aqueous sol ution, the exposure of large hydrophobic surface regions is energetically u nfavourable. Therefore, such surface elements are preferential binding site s and shielded from bulk water in the docking interface. In this review, ph ysical approximations based on properties of the hydration shell structures and leading to the surface model of solvation are systematically analysed. The idea of atomic solvation parameters is shown to be applicable only to hydrophobic parts of the molecular surface. Additionally, the traditional c oncept of the solvent-accessible surface overestimates the hydrophobicity o f molecules with both polar and non-polar solvent-exposed atomic groups. On ly those hydrophobic surface regions that are not covered by first hydratio n shell water molecules can interact with bulk water. Methods for computing hydrophobic surface regions both with explicit models of water shells and with an incremental radial expansion of solvent-accessible polar atoms are considered in detail. The latter technique is shown to provide an easy and quick view of the likely hydrophobic surface regions available for hydropho bic ligand binding. As a literature review revealed, the specific hydrophob ic surface energy appears in the range 12-30 cal/(mol Angstrom(2)), but the exact value applicable for conformational and docking studies is still a m atter of debate.