Despite several careful experimental analyses, it is not yet clear whether protein cold-denaturation is just a "mirror image" of heat denaturation or whether it shows unique structural and energetic features. Here we report that, for a well-characterized small protein, heat denaturation and cold denaturation show dramatically different experimental energetic patterns. Specifically, while heat denaturation is endothermic, the cold transition (studied in the folding direction) occurs with negligible heat effect, in a manner seemingly akin to a gradual, second-order-like transition. We show that this highly anomalous energetics is actually an apparent effect associated to a large folding/unfolding free energy barrier and that it ultimately ref...
The role of the denatured state in protein folding represents a key issue for the proper evaluation ...
AbstractTheoretical work has suggested the existence of solvation/desolvation barriers in protein fo...
What is the mechanism that determines the denaturation of proteins at low temperatures, which is, by...
All globular proteins undergo transitions from their native to unfolded states if exposed either to ...
The hydrophobic effect is considered the main driving force for protein folding and plays an importa...
Protein unfolding occurs at both low and high temperatures, although in most cases, only the high-te...
Protein unfolding occurs at both low and high temperatures, although in most cases, only the high-te...
Recent Förster resonance energy transfer (FRET) experiments show that heat-unfolded states of protei...
International audienceThe role of the denatured state in protein folding represents a key issue for ...
BackgroundRecent data have suggested two principles that are central to the work we describe here. F...
The heat-labile alpha-amylase from an antarctic bacterium is the largest known protein that unfolds ...
Abstract. This thesis describes factors that are rate limiting for the folding of two small proteins...
The role of the denatured state in protein folding represents a key issue for the proper evaluation ...
AbstractTheoretical work has suggested the existence of solvation/desolvation barriers in protein fo...
What is the mechanism that determines the denaturation of proteins at low temperatures, which is, by...
All globular proteins undergo transitions from their native to unfolded states if exposed either to ...
The hydrophobic effect is considered the main driving force for protein folding and plays an importa...
Protein unfolding occurs at both low and high temperatures, although in most cases, only the high-te...
Protein unfolding occurs at both low and high temperatures, although in most cases, only the high-te...
Recent Förster resonance energy transfer (FRET) experiments show that heat-unfolded states of protei...
International audienceThe role of the denatured state in protein folding represents a key issue for ...
BackgroundRecent data have suggested two principles that are central to the work we describe here. F...
The heat-labile alpha-amylase from an antarctic bacterium is the largest known protein that unfolds ...
Abstract. This thesis describes factors that are rate limiting for the folding of two small proteins...
The role of the denatured state in protein folding represents a key issue for the proper evaluation ...
AbstractTheoretical work has suggested the existence of solvation/desolvation barriers in protein fo...
What is the mechanism that determines the denaturation of proteins at low temperatures, which is, by...