The hydrophobic effect is considered the main driving force for protein folding and plays an important role in the stability of those biomolecules. Cold denaturation, where the native state of the protein loses its stability upon cooling, is also attributed to this effect. It is therefore not surprising that a lot of effort has been spent in understanding this phenomenon. Despite these efforts, many unresolved fundamental aspects remain. In this paper we review and summarize the thermodynamics of proteins, the hydrophobic effect and cold denaturation. We start by accounting for these phenomena macroscopically then move to their atomic-level description. We hope this review will help the reader gain insights into the role played by the hydro...
The hydrophobic hydration processes have been analysed under the light of a mixture model of water t...
The hydrophobic effect is a major driving force in protein folding. A complete understanding of this...
We elucidate the mechanism of cold denaturation through constant-pressure simulations for a model of...
The hydrophobic effect is considered the main driving force for protein folding and plays an importa...
The hydrophobic effect is considered the main driving force for protein folding and plays an importa...
The hydrophobic effect is considered the main driving force for protein folding and plays an importa...
The hydrophobic effect is considered the main driving force for protein folding and plays an importa...
The hydrophobic effect is considered the main driving force for protein folding and plays an importa...
The hydrophobic effect is considered the main driving force for protein folding and plays an importa...
A new approach to the problem of cold denaturation is presented. It is based on solvent-induced effe...
We elucidate the mechanism of cold denaturation through constant-pressure simulations for a model of...
The hydrophobic effect stabilizes the native structure of proteins by minimizing the unfavorable int...
We elucidate the mechanism of cold denaturation through constant-pressure simulations for a model of...
We elucidate the mechanism of cold denaturation through constant-pressure simulations for a model of...
AbstractIn this paper, following our work on the two-state outer neighbor mixed bonding model of wat...
The hydrophobic hydration processes have been analysed under the light of a mixture model of water t...
The hydrophobic effect is a major driving force in protein folding. A complete understanding of this...
We elucidate the mechanism of cold denaturation through constant-pressure simulations for a model of...
The hydrophobic effect is considered the main driving force for protein folding and plays an importa...
The hydrophobic effect is considered the main driving force for protein folding and plays an importa...
The hydrophobic effect is considered the main driving force for protein folding and plays an importa...
The hydrophobic effect is considered the main driving force for protein folding and plays an importa...
The hydrophobic effect is considered the main driving force for protein folding and plays an importa...
The hydrophobic effect is considered the main driving force for protein folding and plays an importa...
A new approach to the problem of cold denaturation is presented. It is based on solvent-induced effe...
We elucidate the mechanism of cold denaturation through constant-pressure simulations for a model of...
The hydrophobic effect stabilizes the native structure of proteins by minimizing the unfavorable int...
We elucidate the mechanism of cold denaturation through constant-pressure simulations for a model of...
We elucidate the mechanism of cold denaturation through constant-pressure simulations for a model of...
AbstractIn this paper, following our work on the two-state outer neighbor mixed bonding model of wat...
The hydrophobic hydration processes have been analysed under the light of a mixture model of water t...
The hydrophobic effect is a major driving force in protein folding. A complete understanding of this...
We elucidate the mechanism of cold denaturation through constant-pressure simulations for a model of...