AbstractIn vitro folding of disulfide-containing proteins is generally regulated by redox molecules, such as glutathione. However, the role of the cross-disulfide-linked species formed between the redox molecule and the protein as a folding intermediate in the folding mechanism is poorly understood. In the present study, we investigated the effect of the charge on a redox molecule on disulfide-coupled protein folding. Several types of aliphatic thiol compounds including glutathione were examined for the folding of disulfide-containing-proteins, such as lysozyme and prouroguanylin. The results indicate that the positive charge and its dispersion play a critical role in accelerating disulfide-coupled protein folding
Disulfide bonds in proteins can strongly influence the folding pathways by constraining the conforma...
Premi a l'excel·lència investigadora. Àmbit de les Ciències Experimentals. 2008The process by which ...
The oxidative folding of proteins consists of conformational folding and disulfide-bond reactions. T...
<div><p>Protein disulfides can adopt a wide variety of conformations, each having different energies...
Protein disulfides can adopt a wide variety of conformations, each having different energies. Limite...
Protein disulfides can adopt a wide variety of conformations, each having different energies. Limite...
Almost all pharmaceutically relevant proteins and many extracellular proteins contain disulfide bond...
Almost all pharmaceutically relevant proteins and many extracellular proteins contain disulfide bond...
Almost all pharmaceutically relevant proteins and many extracellular proteins contain disulfide bond...
Redox-active disulfides are capable of being oxidized and reduced under physiological conditions. Th...
Disulfide bonds are unique among post-translational modifications, as they add covalent crosslinks t...
Disulfides are conventionally viewed as structurally stabilizing elements in proteins but emerging e...
Disulfide bonds are unique among post-translational modifications, as they add covalent crosslinks t...
Disulfide bond formation in proteins is an effective tool of both structure stabilization and redox ...
Disulfide-containing proteins are regularly produced for pharmaceutical, industrial, and academic pu...
Disulfide bonds in proteins can strongly influence the folding pathways by constraining the conforma...
Premi a l'excel·lència investigadora. Àmbit de les Ciències Experimentals. 2008The process by which ...
The oxidative folding of proteins consists of conformational folding and disulfide-bond reactions. T...
<div><p>Protein disulfides can adopt a wide variety of conformations, each having different energies...
Protein disulfides can adopt a wide variety of conformations, each having different energies. Limite...
Protein disulfides can adopt a wide variety of conformations, each having different energies. Limite...
Almost all pharmaceutically relevant proteins and many extracellular proteins contain disulfide bond...
Almost all pharmaceutically relevant proteins and many extracellular proteins contain disulfide bond...
Almost all pharmaceutically relevant proteins and many extracellular proteins contain disulfide bond...
Redox-active disulfides are capable of being oxidized and reduced under physiological conditions. Th...
Disulfide bonds are unique among post-translational modifications, as they add covalent crosslinks t...
Disulfides are conventionally viewed as structurally stabilizing elements in proteins but emerging e...
Disulfide bonds are unique among post-translational modifications, as they add covalent crosslinks t...
Disulfide bond formation in proteins is an effective tool of both structure stabilization and redox ...
Disulfide-containing proteins are regularly produced for pharmaceutical, industrial, and academic pu...
Disulfide bonds in proteins can strongly influence the folding pathways by constraining the conforma...
Premi a l'excel·lència investigadora. Àmbit de les Ciències Experimentals. 2008The process by which ...
The oxidative folding of proteins consists of conformational folding and disulfide-bond reactions. T...