Literature DB >> 22737045

Calculation of Host-Guest Binding Affinities Using a Quantum-Mechanical Energy Model.

Hari S Muddana1, Michael K Gilson.   

Abstract

The prediction of protein-ligand binding affinities is of central interest in computer-aided drug discovery, but it is still difficult to achieve a high degree of accuracy. Recent studies suggesting that available force fields may be a key source of error motivate the present study, which reports the first mining minima (M2) binding affinity calculations based on a quantum mechanical energy model, rather than an empirical force field. We apply a semi-empirical quantum-mechanical energy function, PM6-DH+, coupled with the COSMO solvation model, to 29 host-guest systems with a wide range of measured binding affinities. After correction for a systematic error, which appears to derive from the treatment of polar solvation, the computed absolute binding affinities agree well with experimental measurements, with a mean error 1.6 kcal/mol and a correlation coefficient of 0.91. These calculations also delineate the contributions of various energy components, including solute energy, configurational entropy, and solvation free energy, to the binding free energies of these host-guest complexes. Comparison with our previous calculations, which used empirical force fields, point to significant differences in both the energetic and entropic components of the binding free energy. The present study demonstrates successful combination of a quantum mechanical Hamiltonian with the M2 affinity method.

Entities:  

Year:  2012        PMID: 22737045      PMCID: PMC3378313          DOI: 10.1021/ct3002738

Source DB:  PubMed          Journal:  J Chem Theory Comput        ISSN: 1549-9618            Impact factor:   6.006


  39 in total

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Review 7.  Calculation of protein-ligand binding affinities.

Authors:  Michael K Gilson; Huan-Xiang Zhou
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8.  A thorough benchmark of density functional methods for general main group thermochemistry, kinetics, and noncovalent interactions.

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  22 in total

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Authors:  Lauren Wickstrom; Peng He; Emilio Gallicchio; Ronald M Levy
Journal:  J Chem Theory Comput       Date:  2013-07-09       Impact factor: 6.006

Review 2.  Semiempirical Quantum Mechanical Methods for Noncovalent Interactions for Chemical and Biochemical Applications.

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Journal:  Chem Rev       Date:  2016-04-13       Impact factor: 60.622

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4.  Quantum Mechanics Approaches to Drug Research in the Era of Structural Chemogenomics.

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5.  LS-VISM: A software package for analysis of biomolecular solvation.

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6.  Binding enthalpy calculations for a neutral host-guest pair yield widely divergent salt effects across water models.

Authors:  Kaifu Gao; Jian Yin; Niel M Henriksen; Andrew T Fenley; Michael K Gilson
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7.  Parameterization of an effective potential for protein-ligand binding from host-guest affinity data.

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8.  Limiting assumptions in molecular modeling: electrostatics.

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9.  Blind prediction of SAMPL4 cucurbit[7]uril binding affinities with the mining minima method.

Authors:  Hari S Muddana; Jian Yin; Neil V Sapra; Andrew T Fenley; Michael K Gilson
Journal:  J Comput Aided Mol Des       Date:  2014-02-08       Impact factor: 3.686

Review 10.  The SAMPL4 host-guest blind prediction challenge: an overview.

Authors:  Hari S Muddana; Andrew T Fenley; David L Mobley; Michael K Gilson
Journal:  J Comput Aided Mol Des       Date:  2014-03-06       Impact factor: 3.686

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