Disulfide bonds are an abundant feature of proteins across all domains of life that are important for structure, stability, and function. In eukaryotic cells, a major site of disulfide bond formation is the endoplasmic reticulum (ER). How cysteines correctly pair during polypeptide folding to form the native disulfide bond pattern is a complex problem that is not fully understood. In this paper, the evidence for different folding mechanisms involved in ER-localised disulfide bond formation is reviewed with emphasis on events that occur during ER entry. Disulfide formation in nascent polypeptides is discussed with focus on (i) its mechanistic relationship with conformational folding, (ii) evidence for its occurrence at the co-translational s...
Correct formation of disulfide bonds is critical for protein folding. We find that cells lacking pro...
Oxidizing conditions must be maintained in the endoplasmic reticulum (ER) to allow the formation of ...
Background: Comprehension of the rules that govern the folding process is still far from satisfactor...
AbstractProtein disulfide bonds are an important co- and post-translational modification for protein...
The relationship between protein synthesis, folding and disulfide formation within the endoplasmic r...
How and when disulfides bonds form in proteins relative to the stage of their folding is a fundament...
Abstract About one-third of mammalian proteins are secreted proteins and membrane proteins. Most of ...
Efficient folding of proteins frequently requires the introduction of disulfide bonds. The insertio...
Folding of proteins entering the secretory pathway in mammalian cells frequently requires the insert...
Oxidative protein folding in the endoplasmic reticulum (ER) is driven mainly by protein disulfide is...
Disulfide bonds are unique among post-translational modifications, as they add covalent crosslinks t...
Many proteins of the secretory pathway contain disulfide bonds that are essential for structure and ...
AbstractProteins with multiple cysteine residues often require disulfide isomerization reactions bef...
Abstract Efficient maturation of disulfide-containing proteins in the endoplasmic reticulum (ER) re...
Premi a l'excel·lència investigadora. Àmbit de les Ciències Experimentals. 2008The process by which ...
Correct formation of disulfide bonds is critical for protein folding. We find that cells lacking pro...
Oxidizing conditions must be maintained in the endoplasmic reticulum (ER) to allow the formation of ...
Background: Comprehension of the rules that govern the folding process is still far from satisfactor...
AbstractProtein disulfide bonds are an important co- and post-translational modification for protein...
The relationship between protein synthesis, folding and disulfide formation within the endoplasmic r...
How and when disulfides bonds form in proteins relative to the stage of their folding is a fundament...
Abstract About one-third of mammalian proteins are secreted proteins and membrane proteins. Most of ...
Efficient folding of proteins frequently requires the introduction of disulfide bonds. The insertio...
Folding of proteins entering the secretory pathway in mammalian cells frequently requires the insert...
Oxidative protein folding in the endoplasmic reticulum (ER) is driven mainly by protein disulfide is...
Disulfide bonds are unique among post-translational modifications, as they add covalent crosslinks t...
Many proteins of the secretory pathway contain disulfide bonds that are essential for structure and ...
AbstractProteins with multiple cysteine residues often require disulfide isomerization reactions bef...
Abstract Efficient maturation of disulfide-containing proteins in the endoplasmic reticulum (ER) re...
Premi a l'excel·lència investigadora. Àmbit de les Ciències Experimentals. 2008The process by which ...
Correct formation of disulfide bonds is critical for protein folding. We find that cells lacking pro...
Oxidizing conditions must be maintained in the endoplasmic reticulum (ER) to allow the formation of ...
Background: Comprehension of the rules that govern the folding process is still far from satisfactor...