Quantum Mechanical Binding Free Energy Calculation for Phosphopeptide Inhibitors of the Lck SH2 Domain

被引:36
作者
Anisimov, Victor M. [1 ]
Cavasotto, Claudio N. [1 ]
机构
[1] Univ Texas Hlth Sci Ctr Houston, Sch Biomed Informat, Houston, TX 77030 USA
关键词
binding free energy; quantum mechanics; semiempirical methods; end-point methods; SH2; domain; MM/QM-COSMO; PM3; PROTEIN-LIGAND BINDING; AMBER FORCE-FIELD; MOLECULAR-DYNAMICS SIMULATIONS; SOLVATED INTERACTION ENERGY; IMPLICIT SOLVENT MODELS; DER-WAALS INTERACTIONS; P38 MAP KINASE; POISSON-BOLTZMANN; CONTINUUM SOLVENT; DRUG DESIGN;
D O I
10.1002/jcc.21808
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The accurate and efficient calculation of binding free energies is essential in computational biophysics. We present a linear-scaling quantum mechanical (QM)-based end-point method termed MM/QM-COSMO to calculate binding free energies in biomolecular systems, with an improved description of entropic changes. Molecular dynamics trajectories are re-evaluated using a semiempirical Hamiltonian and a continuum solvent model; translational and rotational entropies are calculated using configurational integrals, and internal entropy is calculated using the harmonic oscillator approximation. As an application, we studied the binding of a series of phosphotyrosine tetrapeptides to the human Lck SH2 domain, a key component in intracellular signal transduction, modulation of which can have therapeutic relevance in the treatment of cancer, osteoporosis, and autoimmune diseases. Calculations with molecular mechanics Poisson-Boltzmann, and generalized Born surface area methods showed large discrepancies with experimental data stemming from the enthalpic component, in agreement with an earlier report. The empirical force field-based solvent interaction energy scoring function yielded improved results, with average unsigned error of 3.6 kcal/mol, and a better ligand ranking. The MM/QM-COSMO method exhibited the best agreement both for absolute (average unsigned error - 0.7 kcal/mol) and relative binding free energy calculations. These results show the feasibility and promise of a full QM-based end-point method with an adequate balance of accuracy and computational efficiency. (C) 2011 Wiley Periodicals, Inc. J Comput Chem 32: 2254-2263, 2011
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页码:2254 / 2263
页数:10
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