Absolute binding free energies for octa-acids and guests in SAMPL5Evaluating binding free energies for octa-acid and guest complexes in the SAMPL5 blind challenge

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作者
Florentina Tofoleanu
Juyong Lee
Frank C. Pickard IV
Gerhard König
Jing Huang
Minkyung Baek
Chaok Seok
Bernard R. Brooks
机构
[1] National Institutes of Health – National Heart,Laboratory of Computational Biology
[2] Lung,Department of Pharmaceutical Science, School of Pharmacy
[3] and Blood Institute,Department of Chemistry
[4] Max-Planck-Institut für Kohlenforschung,undefined
[5] University of Maryland,undefined
[6] Seoul National University,undefined
关键词
Binding free energy simulations; Thermodynamic integration; Hamiltonian replica exchange; Bennett acceptance ratio; Double decoupling method; Molecular dynamics simulations; GalaxyDock-HG;
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摘要
As part of the SAMPL5 blind prediction challenge, we calculate the absolute binding free energies of six guest molecules to an octa-acid (OAH) and to a methylated octa-acid (OAMe). We use the double decoupling method via thermodynamic integration (TI) or Hamiltonian replica exchange in connection with the Bennett acceptance ratio (HREM-BAR). We produce the binding poses either through manual docking or by using GalaxyDock-HG, a docking software developed specifically for this study. The root mean square deviations for our most accurate predictions are 1.4 kcal mol−1 for OAH with TI and 1.9 kcal mol−1 for OAMe with HREM-BAR. Our best results for OAMe were obtained for systems with ionic concentrations corresponding to the ionic strength of the experimental solution. The most problematic system contains a halogenated guest. Our attempt to model the σ-hole of the bromine using a constrained off-site point charge, does not improve results. We use results from molecular dynamics simulations to argue that the distinct binding affinities of this guest to OAH and OAMe are due to a difference in the flexibility of the host. We believe that the results of this extensive analysis of host-guest complexes will help improve the protocol used in predicting binding affinities for larger systems, such as protein-substrate compounds.
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页码:107 / 118
页数:11
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