TY - JOUR
T1 - Role of Solvation Effects in Protein Denaturation
T2 - From Thermodynamics to Single Molecules and Back
AU - England, Jeremy L.
AU - Haran, Gilad
PY - 2011
Y1 - 2011
N2 - Protein stability often is studied in vitro through the use of urea and guanidinium chloride, chemical cosolvents that disrupt protein native structure. Much controversy still surrounds the underlying mechanism by which these molecules denature proteins. Here we review current thinking on various aspects of chemical denaturation. We begin by discussing classic models of protein folding and how the effects of denaturants may fit into this picture through their Modulation Of the collapse, or coil-globule transition, which typically. precedes folding. Subsequently, we examine recent molecular dynamics simulations that have shed new light on the possible microscopic origins of the solvation effects brought on by denaturants. It seems likely that both denaturants operate by facilitating solvation of hydrophobic regions of proteins. Finally, we present recent single-molecule fluorescence studies of denatured proteins, the analysis of which corroborates the role of denaturants in shifting the equilibrium of the coil-globule transition.
AB - Protein stability often is studied in vitro through the use of urea and guanidinium chloride, chemical cosolvents that disrupt protein native structure. Much controversy still surrounds the underlying mechanism by which these molecules denature proteins. Here we review current thinking on various aspects of chemical denaturation. We begin by discussing classic models of protein folding and how the effects of denaturants may fit into this picture through their Modulation Of the collapse, or coil-globule transition, which typically. precedes folding. Subsequently, we examine recent molecular dynamics simulations that have shed new light on the possible microscopic origins of the solvation effects brought on by denaturants. It seems likely that both denaturants operate by facilitating solvation of hydrophobic regions of proteins. Finally, we present recent single-molecule fluorescence studies of denatured proteins, the analysis of which corroborates the role of denaturants in shifting the equilibrium of the coil-globule transition.
UR - http://www.scopus.com/inward/record.url?scp=79953759344&partnerID=8YFLogxK
U2 - 10.1146/annurev-physchem-032210-103531
DO - 10.1146/annurev-physchem-032210-103531
M3 - مقالة مرجعية
SN - 0066-426X
VL - 62
SP - 257
EP - 277
JO - Annual Review of Physical Chemistry
JF - Annual Review of Physical Chemistry
ER -