Peptide recognition by the T cell receptor: comparison of binding free energies from thermodynamic integration, Poisson–Boltzmann and linear interaction energy approximations
Open Access
- 20 July 2005
- journal article
- Published by The Royal Society in Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences
- Vol. 363 (1833) , 2037-2053
- https://doi.org/10.1098/rsta.2005.1627
Abstract
The binding to the T cell receptor of wild-type and variant HTLV-1 Tax peptide complexed to the major histocompatibility complex has been investigated by means of molecular dynamics simulations. The binding free energy difference is calculated using the molecular mechanics Poisson–Boltzmann surface area and linear interaction energy methods. These methods extract useful information on the binding energetics from simulations of the physical states of the ligands, which are more computationally expedient than the commonly used thermodynamic integration method. The successful reproduction of the relative binding free energies shows that these methods can be useful for free energy calculations and the rational design of drugs and vaccines.Keywords
This publication has 36 references indexed in Scilit:
- The interpretation of protein structures: Estimation of static accessibilityPublished by Elsevier ,2004
- MHC–Peptide Binding is Assisted by Bound Water MoleculesJournal of Molecular Biology, 2004
- Continuum solvation model: Computation of electrostatic forces from numerical solutions to the Poisson-Boltzmann equationPublished by Elsevier ,1999
- All-Atom Empirical Potential for Molecular Modeling and Dynamics Studies of ProteinsThe Journal of Physical Chemistry B, 1998
- Continuum Treatment of Long-Range Interactions in Free Energy Calculations. Application to Protein−Ligand Binding.The Journal of Physical Chemistry B, 1997
- Ewald summation techniques in perspective: a surveyComputer Physics Communications, 1996
- Simulation analysis of the stability mutant R96H of T4 lysozymeBiochemistry, 1991
- Molecular dynamics with coupling to an external bathThe Journal of Chemical Physics, 1984
- Comparison of simple potential functions for simulating liquid waterThe Journal of Chemical Physics, 1983
- CHARMM: A program for macromolecular energy, minimization, and dynamics calculationsJournal of Computational Chemistry, 1983