A theoretical model for the folding of proteins containing disulfide bonds is introduced. The model exploits the knowledge of the native state to favor the progressive establishment of native interactions. At variance with traditional approaches based on native topology, not all native bonds are treated in the same way; in particular, a suitable energy term is introduced to account for the special strength of disulfide bonds, as well as their ability to undergo intramolecular reshuffling. The model thus possesses the minimal ingredients necessary to investigate the much debated issue of whether the refolding process occurs through partially structured intermediates with native or non-native disulfide ...
ABSTRACT Tendamistat, a small disulfide-bonded b-sheet protein, and its three single/double-disulfid...
A method for determining the kinetic fate of structured disulfide species (i.e., whether they are pr...
In contrast to molecular chaperones that couple protein folding to ATP hydrolysis, protein disulfide...
A theoretical model for the folding of proteins containing disulfide bonds is introduced. The mo...
A theoretical model for the folding of proteins containing disulfide bonds is introduced. The model ...
The study of protein conformations using molecular dynamics (MD) simulations has been in place for d...
The study of protein conformations using molecular dynamics (MD) simulations has been in place for d...
The study of protein conformations using molecular dynamics (MD) simulations has been in place for d...
The study of protein conformations using molecular dynamics (MD) simulations has been in place for d...
Disulfide bonds in proteins can strongly influence the folding pathways by constraining the conforma...
AbstractTendamistat, a small disulfide-bonded β-sheet protein, and its three single/double-disulfide...
The correct balance between proteases and their natural protein inhibitors is of great importance in...
Disulfide bonds in proteins can strongly influence the folding pathways by constraining the conforma...
The oxidative folding of proteins consists of conformational folding and disulfide-bond reactions. T...
The oxidative folding of proteins consists of conformational folding and disulfide-bond reactions. T...
ABSTRACT Tendamistat, a small disulfide-bonded b-sheet protein, and its three single/double-disulfid...
A method for determining the kinetic fate of structured disulfide species (i.e., whether they are pr...
In contrast to molecular chaperones that couple protein folding to ATP hydrolysis, protein disulfide...
A theoretical model for the folding of proteins containing disulfide bonds is introduced. The mo...
A theoretical model for the folding of proteins containing disulfide bonds is introduced. The model ...
The study of protein conformations using molecular dynamics (MD) simulations has been in place for d...
The study of protein conformations using molecular dynamics (MD) simulations has been in place for d...
The study of protein conformations using molecular dynamics (MD) simulations has been in place for d...
The study of protein conformations using molecular dynamics (MD) simulations has been in place for d...
Disulfide bonds in proteins can strongly influence the folding pathways by constraining the conforma...
AbstractTendamistat, a small disulfide-bonded β-sheet protein, and its three single/double-disulfide...
The correct balance between proteases and their natural protein inhibitors is of great importance in...
Disulfide bonds in proteins can strongly influence the folding pathways by constraining the conforma...
The oxidative folding of proteins consists of conformational folding and disulfide-bond reactions. T...
The oxidative folding of proteins consists of conformational folding and disulfide-bond reactions. T...
ABSTRACT Tendamistat, a small disulfide-bonded b-sheet protein, and its three single/double-disulfid...
A method for determining the kinetic fate of structured disulfide species (i.e., whether they are pr...
In contrast to molecular chaperones that couple protein folding to ATP hydrolysis, protein disulfide...