In this work we have investigated hydration properties of aqueous solutions up to a solute molar fraction X2 = 0.125 of two isosteric molecules – the bioprotectant trimethylamine-N-oxide (TMAO) and the denaturant tert-butyl alcohol (TBA) – using molecular dynamics simulation at 298 K. Statistical analyses of the trajectories show in particular that as the solute concentration increases the number of the water molecules in the first hydration shell decreases uniformly for TMAO, while for TBA it decreases more rapidly in a concentration range where experiments indicate that TBA starts to self-aggregate. No appreciable solute segregation occurs for TMAO even in the most concentrated solution, where on the average each water molecule is shared ...
An understanding of the influence of hydrophilic and hydrophobic interactions on the dynamics of sol...
Aqueous solvation of small amphiphilic molecules exhibits a unique and complex dynamics, that is onl...
We study the solvation of amino acids in pure-osmolyte and mixed-osmolyte urea and trimethylamine <i...
Atomistic molecular dynamics simulations have been used to investigate differences in the characteri...
Molecular dynamics simulation is used to investigate the hydration properties of glycine betaine in ...
<p>We report classical molecular dynamics simulation studies of aqueous solution consisting of water...
International audienceWe use ab initio molecular dynamics simulation to study the effect of hydropho...
Two binary aqueous mixtures which contain the small amphiphilic molecules TMAO (trimethylamine-Noxid...
Trimethylamine N-oxide (TMAO) stabilizes protein structures, whereas urea destabilizes proteins, and...
Trimethylamine-N-oxide (TMAO) and urea are commonly produced in many extremophilic microorganisms th...
The hydration and hydrogen-bond topology of small water solvated molecules such as the naturally occ...
In this thesis I investigated, using molecular dynamics simulations, the structure and dynamics of c...
We present measurements, molecular dynamics (MD) simulations, and predictions using Perturbed-Chain ...
Molecular dynamics simulations have been used to characterize the structure of water around n-alcoho...
The physical chemical properties of aqueous solutions of model compounds are illustrated in relation...
An understanding of the influence of hydrophilic and hydrophobic interactions on the dynamics of sol...
Aqueous solvation of small amphiphilic molecules exhibits a unique and complex dynamics, that is onl...
We study the solvation of amino acids in pure-osmolyte and mixed-osmolyte urea and trimethylamine <i...
Atomistic molecular dynamics simulations have been used to investigate differences in the characteri...
Molecular dynamics simulation is used to investigate the hydration properties of glycine betaine in ...
<p>We report classical molecular dynamics simulation studies of aqueous solution consisting of water...
International audienceWe use ab initio molecular dynamics simulation to study the effect of hydropho...
Two binary aqueous mixtures which contain the small amphiphilic molecules TMAO (trimethylamine-Noxid...
Trimethylamine N-oxide (TMAO) stabilizes protein structures, whereas urea destabilizes proteins, and...
Trimethylamine-N-oxide (TMAO) and urea are commonly produced in many extremophilic microorganisms th...
The hydration and hydrogen-bond topology of small water solvated molecules such as the naturally occ...
In this thesis I investigated, using molecular dynamics simulations, the structure and dynamics of c...
We present measurements, molecular dynamics (MD) simulations, and predictions using Perturbed-Chain ...
Molecular dynamics simulations have been used to characterize the structure of water around n-alcoho...
The physical chemical properties of aqueous solutions of model compounds are illustrated in relation...
An understanding of the influence of hydrophilic and hydrophobic interactions on the dynamics of sol...
Aqueous solvation of small amphiphilic molecules exhibits a unique and complex dynamics, that is onl...
We study the solvation of amino acids in pure-osmolyte and mixed-osmolyte urea and trimethylamine <i...