The authors address the problem of downhill protein folding in the framework of a simple statistical mechanical model, which allows an exact solution for the equilibrium and a semianalytical treatment of the kinetics. Focusing on protein 1BBL, a candidate for downhill folding behavior, and comparing it to the WW domain of protein PIN1, a two-state folder of comparable size, the authors show that there are qualitative differences in both the equilibrium and kinetic properties of the two molecules. However, the barrierless scenario which would be expected if 1BBL were a true downhill folder is observed only at low enough temperature
Classical protein folding invokes a cooperative transition between distinct thermodynamic states tha...
Abstract: We describe the master equation method for computing the kinetics of protein folding. We i...
The possibility of downhill instead of two-state folding for proteins has been a very controversial ...
A kinetic and thermodynamic survey of 35 WW domain sequences is used in combination with a model to ...
A kinetic and thermodynamic survey of 35 WW domain sequences is used in combination with a model to ...
AbstractOne of the predictions of the energy landscape theory of protein folding is the possibility ...
Conventional cooperative protein folding invokes discrete ensembles of native and denatured state st...
We describe here a general model of the kinetic mechanism of protein folding. In the Foldon Funnel M...
We describe here a general model of the kinetic mechanism of protein folding. In the Foldon Funnel M...
ABSTRACT: One strategy for reaching the downhill folding regime, primarily exploited for the λ6−85 p...
BackgroundRecent data have suggested two principles that are central to the work we describe here. F...
AbstractThermodynamic measurements of proteins indicate that the folding to the native state takes p...
Configuration-dependent diffusion (CDD) is important for protein folding kinetics with small thermod...
Recent years have seen the publication of both empirical and theoretical relationships predicting th...
URL: http://www-spht.cea.fr/articles/T93/023 (sur invitation). AbstractInternational audienceProtein...
Classical protein folding invokes a cooperative transition between distinct thermodynamic states tha...
Abstract: We describe the master equation method for computing the kinetics of protein folding. We i...
The possibility of downhill instead of two-state folding for proteins has been a very controversial ...
A kinetic and thermodynamic survey of 35 WW domain sequences is used in combination with a model to ...
A kinetic and thermodynamic survey of 35 WW domain sequences is used in combination with a model to ...
AbstractOne of the predictions of the energy landscape theory of protein folding is the possibility ...
Conventional cooperative protein folding invokes discrete ensembles of native and denatured state st...
We describe here a general model of the kinetic mechanism of protein folding. In the Foldon Funnel M...
We describe here a general model of the kinetic mechanism of protein folding. In the Foldon Funnel M...
ABSTRACT: One strategy for reaching the downhill folding regime, primarily exploited for the λ6−85 p...
BackgroundRecent data have suggested two principles that are central to the work we describe here. F...
AbstractThermodynamic measurements of proteins indicate that the folding to the native state takes p...
Configuration-dependent diffusion (CDD) is important for protein folding kinetics with small thermod...
Recent years have seen the publication of both empirical and theoretical relationships predicting th...
URL: http://www-spht.cea.fr/articles/T93/023 (sur invitation). AbstractInternational audienceProtein...
Classical protein folding invokes a cooperative transition between distinct thermodynamic states tha...
Abstract: We describe the master equation method for computing the kinetics of protein folding. We i...
The possibility of downhill instead of two-state folding for proteins has been a very controversial ...