نتایج جستجو برای: solvation force

تعداد نتایج: 193555  

G. Rezaei Behbehani

Effects of ?-cyclodextrin, ?CD, on refolding of lysozyme was investigated at pH 12 employing isothermal titration calorimetry (ITC) at 300K in 30mM Tris buffer solution. ?CD was employed as an anti-aggregation agent and the heats obtained for lysozyme+?CD interactions are reported and analyzed in terms of the extended solvation model. It was indicated that there are two sets of identical and no...

2014
Junya Yamagishi Noriaki Okimoto Gentaro Morimoto Makoto Taiji

The Poisson-Boltzmann implicit solvent (PB) is widely used to estimate the solvation free energies of biomolecules in molecular simulations. An optimized set of atomic radii (PB radii) is an important parameter for PB calculations, which determines the distribution of dielectric constants around the solute. We here present new PB radii for the AMBER protein force field to accurately reproduce t...

Journal: :The Journal of chemical physics 2013
Shavkat Mamatkulov Maria Fyta Roland R Netz

We develop force field parameters for the divalent cations Mg(2+), Ca(2+), Sr(2+), and Ba(2+) for molecular dynamics simulations with the simple point charge-extended (SPC/E) water model. We follow an approach introduced recently for the optimization of monovalent ions, based on the simultaneous optimization of single-ion and ion-pair properties. We consider the solvation free energy of the div...

2012
Jens Kleinjung Walter R. P. Scott Jane R. Allison Wilfred F. van Gunsteren Franca Fraternali

Implicit solvation is a mean force approach to model solvent forces acting on a solute molecule. It is frequently used in molecular simulations to reduce the computational cost of solvent treatment. In the first instance, the free energy of solvation and the associated solvent-solute forces can be approximated by a function of the solvent-accessible surface area (SASA) of the solute and differe...

Journal: :Chemical communications 2014
Toru Utsunomiya Yasuyuki Yokota Toshiaki Enoki Ken-ichi Fukui

Potential-dependent solvation structures of aqueous electrolyte-graphite interfaces were studied using electrochemical frequency modulation atomic force microscopy. Oscillatory modulations on the force curves reversibly changed with the applied potential on the graphite electrode, and also strongly depended on the anion species in electrolyte solutions.

Journal: :Journal of chemical theory and computation 2018
Xiu Yang Huan Lei Peiyuan Gao Dennis G Thomas David L Mobley Nathan A Baker

Atomic radii and charges are two major parameters used in implicit solvent electrostatics and energy calculations. The optimization problem for charges and radii is underdetermined, leading to uncertainty in the values of these parameters and in the results of solvation energy calculations using these parameters. This paper presents a new method for quantifying this uncertainty in implicit solv...

Journal: :Journal of chemical theory and computation 2015
Robert B Best Wenwei Zheng Jeetain Mittal

J. Chem. Theory Comput. 2014, 10 (11), 5113−5124. DOI:10.1021/ct500569b In our paper we did not properly acknowledge the contribution by Head-Gordon and co-workers (ref 41 of our manuscript). These authors used a similar modification of the mixing rules for protein−water interactions, although the correction was applied on a per-atom basis to both the characteristic distance (sigma) and energy ...

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