Most proteins destined for the extracellular space require disulfide bonds for folding and stability. Disulfide bonds are introduced co- and post-translationally in endoplasmic reticulum (ER) cargo in a redox relay that requires a terminal electron acceptor. Oxygen can serve as the electron acceptor in vitro, but its role in vivo remains unknown. Hypoxia causes ER stress, suggesting a role for oxygen in protein folding. Here we demonstrate the existence of two phases of disulfide bond formation in living mammalian cells, with differential requirements for oxygen. Disulfide. bonds introduced rapidly during protein synthesis can occur without oxygen, whereas those introduced during post-translational folding or isomerization are oxygen depend...
AbstractProtein disulfide bonds are an important co- and post-translational modification for protein...
AbstractDisulfide bond formation is catalyzed in vivo by DsbA and DsbB. Here we reconstitute this ox...
AbstractLiving cells must be able to respond to physiological and environmental fluctuations that th...
Most proteins destined for the extracellular space require disulfide bonds for folding and stability...
Most proteins destined for the extracellular space require disulfide bonds for folding and stability...
The endoplasmic reticulum (ER) provides an environment that is highly optimized for oxidative protei...
AIMS Oxidative protein folding in the luminal compartment of endoplasmic reticulum (ER) is though...
In eukaryotic cells, protein disulfide bond formation occurs in the lumen of the ER as part of the f...
The efficient folding, assembly and secretion of proteins from mammalian cells is a critically impor...
The efficient folding, assembly and secretion of proteins from mammalian cells is a critically impor...
Disulfide bond formation in proteins is an effective tool of both structure stabilization and redox ...
Protein disulfide bonds are an important co- and post-translational modification for proteins enteri...
AbstractNative disulphide-bond formation during protein folding in the endoplasmic reticulum require...
Many proteins of the secretory pathway contain disulfide bonds that are essential for structure and ...
Our concept of how disulfides form in proteins entering the secretory pathway has changed dramatical...
AbstractProtein disulfide bonds are an important co- and post-translational modification for protein...
AbstractDisulfide bond formation is catalyzed in vivo by DsbA and DsbB. Here we reconstitute this ox...
AbstractLiving cells must be able to respond to physiological and environmental fluctuations that th...
Most proteins destined for the extracellular space require disulfide bonds for folding and stability...
Most proteins destined for the extracellular space require disulfide bonds for folding and stability...
The endoplasmic reticulum (ER) provides an environment that is highly optimized for oxidative protei...
AIMS Oxidative protein folding in the luminal compartment of endoplasmic reticulum (ER) is though...
In eukaryotic cells, protein disulfide bond formation occurs in the lumen of the ER as part of the f...
The efficient folding, assembly and secretion of proteins from mammalian cells is a critically impor...
The efficient folding, assembly and secretion of proteins from mammalian cells is a critically impor...
Disulfide bond formation in proteins is an effective tool of both structure stabilization and redox ...
Protein disulfide bonds are an important co- and post-translational modification for proteins enteri...
AbstractNative disulphide-bond formation during protein folding in the endoplasmic reticulum require...
Many proteins of the secretory pathway contain disulfide bonds that are essential for structure and ...
Our concept of how disulfides form in proteins entering the secretory pathway has changed dramatical...
AbstractProtein disulfide bonds are an important co- and post-translational modification for protein...
AbstractDisulfide bond formation is catalyzed in vivo by DsbA and DsbB. Here we reconstitute this ox...
AbstractLiving cells must be able to respond to physiological and environmental fluctuations that th...