AbstractWe revisit a heteropolymer collapse theory originally introduced to explore how the balance between hydrophobic interactions and configurational entropy determines the thermal stability of globular proteins at ambient pressure. We generalize the theory by introducing a basic statistical mechanical treatment for how pressure impacts the solvent-mediated interactions between hydrophobic amino-acid residues. In particular, we estimate the strength of the hydrophobic interactions using a molecular thermodynamic model for the interfacial free energy between liquid water and a curved hydrophobic solute. The model, which also reproduces many of the distinctive thermodynamic properties of aqueous solutions in bulk and interfacial environmen...
ABSTRACT We present a coarse-grained approach for modeling the thermodynamic stability of single-dom...
The unfolded(U) folded(F) transition of a polypeptide chain is only marginally stable, with the net...
Cold and pressure denaturation are believed to have their molecular origin in hydrophobic interactio...
AbstractWe revisit a heteropolymer collapse theory originally introduced to explore how the balance ...
AbstractWe investigate the effect of temperature and pressure on polypeptide conformational stabilit...
textIn this dissertation, we develop a coarse-grained model to study protein stability in concentra...
ABSTRACT We investigate the effect of temperature and pressure on polypeptide conformational stabili...
AbstractWe present a coarse-grained approach for modeling the thermodynamic stability of single-doma...
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...
Treballs Finals de Grau de Física, Facultat de Física, Universitat de Barcelona, Curs: 2016, Tutor: ...
Proteins tend to adopt a single or a reduced ensemble of configurations at natural conditions [1], b...
Proteins can be denatured by pressures of a few hundred MPa. This finding apparently contradicts the...
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...
ABSTRACT We present a coarse-grained approach for modeling the thermodynamic stability of single-dom...
The unfolded(U) folded(F) transition of a polypeptide chain is only marginally stable, with the net...
Cold and pressure denaturation are believed to have their molecular origin in hydrophobic interactio...
AbstractWe revisit a heteropolymer collapse theory originally introduced to explore how the balance ...
AbstractWe investigate the effect of temperature and pressure on polypeptide conformational stabilit...
textIn this dissertation, we develop a coarse-grained model to study protein stability in concentra...
ABSTRACT We investigate the effect of temperature and pressure on polypeptide conformational stabili...
AbstractWe present a coarse-grained approach for modeling the thermodynamic stability of single-doma...
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...
Treballs Finals de Grau de Física, Facultat de Física, Universitat de Barcelona, Curs: 2016, Tutor: ...
Proteins tend to adopt a single or a reduced ensemble of configurations at natural conditions [1], b...
Proteins can be denatured by pressures of a few hundred MPa. This finding apparently contradicts the...
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...
ABSTRACT We present a coarse-grained approach for modeling the thermodynamic stability of single-dom...
The unfolded(U) folded(F) transition of a polypeptide chain is only marginally stable, with the net...
Cold and pressure denaturation are believed to have their molecular origin in hydrophobic interactio...