Improvement in the in vitro oxidative folding of disulfide-containing proteins, such as extracellular and pharmaceutically important proteins, is required. Traditional folding methods using small molecule aliphatic thiol and disulfide, such as glutathione (GSH) and glutathione disulfide (GSSG) are slow and low yielding. Small molecule aromatic thiols and disulfides show great potentiality because aromatic thiols have low pKa values, close to the thiol pKa of protein disulfide isomerase (PDI), higher nucleophilicity and good leaving group ability. Our studies showed that thiols with a positively charged group, quaternary ammonium salts (QAS), are better than thiols with negatively charged groups such as phosphonic acid and sulfonic acid for ...
Almost all pharmaceutically relevant proteins and many extracellular proteins contain disulfide bond...
Almost all pharmaceutically relevant proteins and many extracellular proteins contain disulfide bond...
Protein folding is assisted by molecular chaperones and folding catalysts in vivo. Understanding how...
Almost all therapeutic proteins contain disulfide bonds to stabilize their native structure. Recombi...
The oxidative folding pathway of the disulfide containing protein bovine pancreatic trypsin inhibito...
Almost all therapeutic proteins contain disulfide bonds to stabilize their native structure. Recombi...
Almost all therapeutic proteins contain disulfide bonds to stabilize their native structure. Recombi...
Most pharmaceutically relevant proteins and many extracellular proteins contain disulfide bonds. For...
Most pharmaceutically relevant proteins and many extracellular proteins contain disulfide bonds. For...
The periplasm provides a strongly oxidizing environment; however, periplasmic expression of proteins...
Most pharmaceutically relevant proteins and many extracellular proteins contain disulfide bonds. For...
Understanding the mechanisms through which proteins acquire their three dimensional structure is cur...
Disulfide-containing proteins are regularly produced for pharmaceutical, industrial, and academic pu...
AbstractBackground: The formation of native disulfide bonds between cysteine residues often limits t...
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...
Protein folding is assisted by molecular chaperones and folding catalysts in vivo. Understanding how...
Almost all therapeutic proteins contain disulfide bonds to stabilize their native structure. Recombi...
The oxidative folding pathway of the disulfide containing protein bovine pancreatic trypsin inhibito...
Almost all therapeutic proteins contain disulfide bonds to stabilize their native structure. Recombi...
Almost all therapeutic proteins contain disulfide bonds to stabilize their native structure. Recombi...
Most pharmaceutically relevant proteins and many extracellular proteins contain disulfide bonds. For...
Most pharmaceutically relevant proteins and many extracellular proteins contain disulfide bonds. For...
The periplasm provides a strongly oxidizing environment; however, periplasmic expression of proteins...
Most pharmaceutically relevant proteins and many extracellular proteins contain disulfide bonds. For...
Understanding the mechanisms through which proteins acquire their three dimensional structure is cur...
Disulfide-containing proteins are regularly produced for pharmaceutical, industrial, and academic pu...
AbstractBackground: The formation of native disulfide bonds between cysteine residues often limits t...
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...
Protein folding is assisted by molecular chaperones and folding catalysts in vivo. Understanding how...