Literature DB >> 17388417

Simple physics-based analytical formulas for the potentials of mean force for the interaction of amino acid side chains in water. 2. Tests with simple spherical systems.

Mariusz Makowski1, Adam Liwo, Katarzyna Maksimiak, Joanna Makowska, Harold A Scheraga.   

Abstract

Simple analytical functions consisting of electrostatic, polarization, Lennard-Jones or modified Lennard-Jones, and cavity terms are proposed to express the potentials of mean force analytically for spherical particles interacting in water. The cavity term was expressed either through the molecular-surface area of the solute or by using the Gaussian-overlap model of hydrophobic hydration developed in paper 1 of this series. The analytical expressions were fitted to the potentials of mean force of a methane homodimer, heterodimers composed of a methane molecule, and an ammonium cation or a chloride anion, respectively, and dimers consisting of two chloride anions, two ammonium cations, or a chloride ion and an ammonium cation. The potentials of mean force for these dimers were determined by umbrella-sampling molecular dynamics simulations with the AMBER 7.0 force field with TIP3P water either in our earlier work or in this work. For all systems, the analytical formulas fitted the potentials of mean force very well. However, using the molecular-surface area to express the cavity term provided a good fit only when the nonbonded interactions were expressed by an all-repulsive modified Lennard-Jones potential but also resulted in non-physical values of some of the parameters. Conversely, the use of our new Gaussian-overlap-based expression for the cavity term provided a good fit to the potentials of mean force (PMFs) with Lennard-Jones nonbonded potential, and the values of all parameters were physically reasonable.

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Year:  2007        PMID: 17388417     DOI: 10.1021/jp065917k

Source DB:  PubMed          Journal:  J Phys Chem B        ISSN: 1520-5207            Impact factor:   2.991


  11 in total

1.  Towards temperature-dependent coarse-grained potentials of side-chain interactions for protein folding simulations. I: molecular dynamics study of a pair of methane molecules in water at various temperatures.

Authors:  Emil Sobolewski; Mariusz Makowski; Stanislaw Oldziej; Cezary Czaplewski; Adam Liwo; Harold A Scheraga
Journal:  Protein Eng Des Sel       Date:  2009-06-25       Impact factor: 1.650

2.  Toward temperature-dependent coarse-grained potentials of side-chain interactions for protein folding simulations. II. Molecular dynamics study of pairs of different types of interactions in water at various temperatures.

Authors:  Emil Sobolewski; Stanisław Ołdziej; Marta Wiśniewska; Adam Liwo; Mariusz Makowski
Journal:  J Phys Chem B       Date:  2012-04-16       Impact factor: 2.991

3.  Simple Physics-Based Analytical Formulas for the Potentials of Mean Force of the Interaction of Amino Acid Side Chains in Water. VII. Charged-Hydrophobic/Polar and Polar-Hydrophobic/Polar Side Chains.

Authors:  Mariusz Makowski; Adam Liwo; Harold A Scheraga
Journal:  J Phys Chem B       Date:  2017-01-05       Impact factor: 2.991

Review 4.  Coarse-grained force field: general folding theory.

Authors:  Adam Liwo; Yi He; Harold A Scheraga
Journal:  Phys Chem Chem Phys       Date:  2011-06-03       Impact factor: 3.676

5.  Theoretical Studies of Interactions between O-Phosphorylated and Standard Amino-Acid Side-Chain Models in Water.

Authors:  Marta Wiśniewska; Emil Sobolewski; Stanisław Ołdziej; Adam Liwo; Harold A Scheraga; Mariusz Makowski
Journal:  J Phys Chem B       Date:  2015-06-30       Impact factor: 2.991

6.  Simple physics-based analytical formulas for the potentials of mean force of the interaction of amino-acid side chains in water. VI. Oppositely charged side chains.

Authors:  Mariusz Makowski; Adam Liwo; Harold A Scheraga
Journal:  J Phys Chem B       Date:  2011-04-18       Impact factor: 2.991

7.  Simple physics-based analytical formulas for the potentials of mean force of the interaction of amino-acid side chains in water. V. Like-charged side chains.

Authors:  Mariusz Makowski; Adam Liwo; Emil Sobolewski; Harold A Scheraga
Journal:  J Phys Chem B       Date:  2011-04-18       Impact factor: 2.991

8.  Ion binding sites and their representations by reduced models.

Authors:  Benoît Roux
Journal:  J Phys Chem B       Date:  2012-04-30       Impact factor: 2.991

9.  Determination of side-chain-rotamer and side-chain and backbone virtual-bond-stretching potentials of mean force from AM1 energy surfaces of terminally-blocked amino-acid residues, for coarse-grained simulations of protein structure and folding. I. The method.

Authors:  Urszula Kozłowska; Adam Liwo; Harold A Scheraga
Journal:  J Comput Chem       Date:  2010-04-30       Impact factor: 3.376

10.  Simple physics-based analytical formulas for the potentials of mean force for the interaction of amino acid side chains in water. IV. Pairs of different hydrophobic side chains.

Authors:  Mariusz Makowski; Emil Sobolewski; Cezary Czaplewski; Stanisław Ołdziej; Adam Liwo; Harold A Scheraga
Journal:  J Phys Chem B       Date:  2008-08-14       Impact factor: 2.991

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