Proteins can be denatured by pressures of a few hundred MPa. This finding apparently contradicts the most widely used model of protein stability, where the formation of a hydrophobic core drives protein folding. The pressure denaturation puzzle is resolved by focusing on the pressure-dependent transfer of water into the protein interior, in contrast to the transfer of nonpolar residues into water, the approach commonly taken in models of protein unfolding. Pressure denaturation of proteins can then be explained by the pressure destabilization of hydrophobic aggregates by using an information theory model of hydrophobic interactions. Pressure-denatured proteins, unlike heat-denatured proteins, retain a compact structure with water molecules ...
We elucidate the mechanism of cold denaturation through constant-pressure simulations for a model of...
A thorough understanding of protein structure and stability requires that we elucidate the molecular...
A thorough understanding of protein structure and stability requires that we elucidate the molecular...
It is well known that proteins denature under high pressure. The mechanism that underlies such a pro...
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...
It is well known that proteins denature under high pressure. The mechanism that underlies such a pro...
AbstractIt is well known that proteins denature under high pressure. The mechanism that underlies su...
A theoretical approach is developed to quantify hydrophobic hydration and interactions on a molecula...
The mechanisms of cold and pressure denaturation of proteins are matter of debate and are commonly u...
In the last few years, hydrostatic pressure has been extensively used in the study of both protein f...
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...
AbstractWe revisit a heteropolymer collapse theory originally introduced to explore how the balance ...
Cold and pressure denaturation are believed to have their molecular origin in hydrophobic interactio...
We elucidate the mechanism of cold denaturation through constant-pressure simulations for a model of...
A thorough understanding of protein structure and stability requires that we elucidate the molecular...
A thorough understanding of protein structure and stability requires that we elucidate the molecular...
It is well known that proteins denature under high pressure. The mechanism that underlies such a pro...
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...
It is well known that proteins denature under high pressure. The mechanism that underlies such a pro...
AbstractIt is well known that proteins denature under high pressure. The mechanism that underlies su...
A theoretical approach is developed to quantify hydrophobic hydration and interactions on a molecula...
The mechanisms of cold and pressure denaturation of proteins are matter of debate and are commonly u...
In the last few years, hydrostatic pressure has been extensively used in the study of both protein f...
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...
AbstractWe revisit a heteropolymer collapse theory originally introduced to explore how the balance ...
Cold and pressure denaturation are believed to have their molecular origin in hydrophobic interactio...
We elucidate the mechanism of cold denaturation through constant-pressure simulations for a model of...
A thorough understanding of protein structure and stability requires that we elucidate the molecular...
A thorough understanding of protein structure and stability requires that we elucidate the molecular...