Authors
Matthieu Schapira, Maxim Totrov, Ruben Abagyan
Publication date
1999/5
Source
Journal of Molecular Recognition
Volume
12
Issue
3
Pages
177-190
Publisher
John Wiley & Sons, Ltd.
Description
A fast and reliable evaluation of the binding energy from a single conformation of a molecular complex is an important practical task. Knowledge‐based scoring schemes may not be sufficiently general and transferable, while molecular dynamics or Monte Carlo calculations with explicit solvent are too computationally expensive for many applications. Recently, several empirical schemes using finite difference Poisson–Boltzmann electrostatics to predict energies for particular types of complexes were proposed. Here, an improved empirical binding energy function has been derived and validated on three different types of complexes: protein–small ligand, protein–peptide and protein–protein. The function uses the boundary element algorithm to evaluate the electrostatic solvation energy. We show that a single set of parameters can predict the relative binding energies of the heterogeneous validation set of …
Total citations
199920002001200220032004200520062007200820092010201120122013201420152016201720182019202020212022202320241481322379158129101714991043587732
Scholar articles