The mechanisms of cold and pressure denaturation of proteins are matter of debate and are commonly understood as due to water-mediated interactions. Here, we study several cases of proteins, with or without a unique native state, with or without hydrophilic residues, by means of a coarse-grain protein model in explicit solvent. We show, using Monte Carlo simulations, that taking into account how water at the protein interface changes its hydrogen bond properties and its density fluctuations is enough to predict protein stability regions with elliptic shapes in the temperature-pressure plane, consistent with previous theories. Our results clearly identify the different mechanisms with which water participates to denaturation and open the per...
AbstractWe revisit a heteropolymer collapse theory originally introduced to explore how the balance ...
AbstractIt is well known that proteins denature under high pressure. The mechanism that underlies su...
It is well known that proteins denature under high pressure. The mechanism that underlies such a pro...
The mechanisms of cold and pressure denaturation of proteins are matter of debate and are commonly u...
We study cold denaturation of proteins at high pressures. Using multicanonical Monte Carlo simulatio...
Treballs Finals de Grau de Física, Facultat de Física, Universitat de Barcelona, Curs: 2016, Tutor: ...
Treballs Finals de Grau de Física, Facultat de Física, Universitat de Barcelona, Any: 2015, Tutor: G...
Proteins tend to adopt a single or a reduced ensemble of configurations at natural conditions [1], b...
Proteins that are functional at ambient conditions do not necessarily work at extreme conditions of ...
AbstractWe investigate the effect of temperature and pressure on polypeptide conformational stabilit...
AbstractIn this paper, following our work on the two-state outer neighbor mixed bonding model of wat...
We elucidate the mechanism of cold denaturation through constant-pressure simulations for a model of...
The hydrophobic effect is a major driving force in protein folding. A complete understanding of this...
Extensive molecular dynamics (MD) simulations have been used to characterize the multiple roles of w...
Simulations employing an explicit atom description of proteins in solvent can be computationally exp...
AbstractWe revisit a heteropolymer collapse theory originally introduced to explore how the balance ...
AbstractIt is well known that proteins denature under high pressure. The mechanism that underlies su...
It is well known that proteins denature under high pressure. The mechanism that underlies such a pro...
The mechanisms of cold and pressure denaturation of proteins are matter of debate and are commonly u...
We study cold denaturation of proteins at high pressures. Using multicanonical Monte Carlo simulatio...
Treballs Finals de Grau de Física, Facultat de Física, Universitat de Barcelona, Curs: 2016, Tutor: ...
Treballs Finals de Grau de Física, Facultat de Física, Universitat de Barcelona, Any: 2015, Tutor: G...
Proteins tend to adopt a single or a reduced ensemble of configurations at natural conditions [1], b...
Proteins that are functional at ambient conditions do not necessarily work at extreme conditions of ...
AbstractWe investigate the effect of temperature and pressure on polypeptide conformational stabilit...
AbstractIn this paper, following our work on the two-state outer neighbor mixed bonding model of wat...
We elucidate the mechanism of cold denaturation through constant-pressure simulations for a model of...
The hydrophobic effect is a major driving force in protein folding. A complete understanding of this...
Extensive molecular dynamics (MD) simulations have been used to characterize the multiple roles of w...
Simulations employing an explicit atom description of proteins in solvent can be computationally exp...
AbstractWe revisit a heteropolymer collapse theory originally introduced to explore how the balance ...
AbstractIt is well known that proteins denature under high pressure. The mechanism that underlies su...
It is well known that proteins denature under high pressure. The mechanism that underlies such a pro...