A method is presented to identify hot mutational spots and predict the extent of surface burial at the transition state relative to the native fold in two-state folding proteins. The method is based on ab initio simulations of folding histories in which transitions between coarsely defined conformations and pairwise interactions are dependent on the solvent environments created by the chain. The highly conserved mammalian ubiquitin is adopted as a study case to make predictions. The evolution in time of the chain topology suggests a nucleation process with a critical point signaled by a sudden quenching of structural fluctuations. The occurrence of this nucleus is shown to be concurrent with a sudden escalation in the number of three-body c...
ABSTRACT: One strategy for reaching the downhill folding regime, primarily exploited for the λ6−85 p...
The N-terminal RNA binding domain of U1A has been shown to fold in a two-state process without accum...
Determining how a protein folds is a central problem in structural biology. The rate of folding of m...
A method is presented to identify hot mutational spots and predict the extent of surface burial at t...
The nucleation-condensation mechanism represents a major paradigm to understand the folding process ...
Making use of an ab-initio folding simulator, we generate in vitro pathways leading to the native fo...
We apply a simulational proxy of the phi-value analysis and perform extensive mutagenesis experiment...
The nucleation−condensation mechanism represents a major paradigm to understand the folding process ...
Folded conformations of proteins in thermodynamically stable states have long lifetimes. Before it f...
A number of recent studies called attention to the presence of kinetically important residues underl...
Rational mutation of proteins based on their structural and dynamic characteristics is a useful stra...
Protein folding is the natural process through which a linear polypeptide, originally encoded by a g...
AbstractSmall single-domain proteins often exhibit only a single free-energy barrier, or transition ...
The nucleation–condensation mechanism represents a major paradigm to understand the folding process ...
Backgound:Single-module proteins, such as chymotrypsin inhibitor 2 (CI2), fold as a single cooperati...
ABSTRACT: One strategy for reaching the downhill folding regime, primarily exploited for the λ6−85 p...
The N-terminal RNA binding domain of U1A has been shown to fold in a two-state process without accum...
Determining how a protein folds is a central problem in structural biology. The rate of folding of m...
A method is presented to identify hot mutational spots and predict the extent of surface burial at t...
The nucleation-condensation mechanism represents a major paradigm to understand the folding process ...
Making use of an ab-initio folding simulator, we generate in vitro pathways leading to the native fo...
We apply a simulational proxy of the phi-value analysis and perform extensive mutagenesis experiment...
The nucleation−condensation mechanism represents a major paradigm to understand the folding process ...
Folded conformations of proteins in thermodynamically stable states have long lifetimes. Before it f...
A number of recent studies called attention to the presence of kinetically important residues underl...
Rational mutation of proteins based on their structural and dynamic characteristics is a useful stra...
Protein folding is the natural process through which a linear polypeptide, originally encoded by a g...
AbstractSmall single-domain proteins often exhibit only a single free-energy barrier, or transition ...
The nucleation–condensation mechanism represents a major paradigm to understand the folding process ...
Backgound:Single-module proteins, such as chymotrypsin inhibitor 2 (CI2), fold as a single cooperati...
ABSTRACT: One strategy for reaching the downhill folding regime, primarily exploited for the λ6−85 p...
The N-terminal RNA binding domain of U1A has been shown to fold in a two-state process without accum...
Determining how a protein folds is a central problem in structural biology. The rate of folding of m...