Disulfide bond formation is a crucial step for oxidative folding and necessary for the acquisition of a protein's native conformation. Introduction of disulfide bonds is catalyzed in specialized subcellular compartments and requires the coordinated action of specific enzymes. The intermembrane space of mitochondria has recently been found to harbor a dedicated machinery that promotes the oxidative folding of substrate proteins by shuttling disulfide bonds. The newly identified oxidative pathway consists of the redox-regulated receptor Mia40 and the sulfhydryl oxidase Erv1. Proteins destined to the intermembrane space are trapped by a disulfide relay mechanism that involves an electron cascade from the incoming substrate to Mia40, then on to...
The identification of protein disulfide isomerase (PDI), almost 50 years ago, opened the way to the ...
AbstractThe compartment between the outer and the inner membranes of mitochondria, the intermembrane...
Mitochondria are fundamental intracellular organelles with key roles in important cellular processes...
Disulfide bond formation is a crucial step for oxidative folding and necessary for the acquisition o...
Disulfide bond formation in proteins is an effective tool of both structure stabilization and redox ...
Oxidative folding in the mitochondrial intermembrane space (IMS) is a key cellular event associated ...
AbstractProtein translocation pathways to the mitochondrial matrix and inner membrane have been well...
AbstractMany newly synthesized proteins obtain disulfide bonds in the bacterial periplasm, the endop...
AbstractWhen thinking of the mitochondrial intermembrane space we envisage a small compartment that ...
SummaryWe describe here a pathway for the import of proteins into the intermembrane space (IMS) of m...
AbstractDisulfide bond formation is catalyzed in vivo by DsbA and DsbB. Here we reconstitute this ox...
Significance: The introduction of disulfide bonds in proteins of the mitochondrial intermembrane spa...
Eukaryotic cells harbor membrane-enclosed compartments to spatially separate different biochemical p...
In this issue of Cell, Mesecke et al. (2005) show that there is a disulfide relay system in the inte...
In this issue of Cell, Mesecke et al. (2005) show that there is a disulfide relay system in the inte...
The identification of protein disulfide isomerase (PDI), almost 50 years ago, opened the way to the ...
AbstractThe compartment between the outer and the inner membranes of mitochondria, the intermembrane...
Mitochondria are fundamental intracellular organelles with key roles in important cellular processes...
Disulfide bond formation is a crucial step for oxidative folding and necessary for the acquisition o...
Disulfide bond formation in proteins is an effective tool of both structure stabilization and redox ...
Oxidative folding in the mitochondrial intermembrane space (IMS) is a key cellular event associated ...
AbstractProtein translocation pathways to the mitochondrial matrix and inner membrane have been well...
AbstractMany newly synthesized proteins obtain disulfide bonds in the bacterial periplasm, the endop...
AbstractWhen thinking of the mitochondrial intermembrane space we envisage a small compartment that ...
SummaryWe describe here a pathway for the import of proteins into the intermembrane space (IMS) of m...
AbstractDisulfide bond formation is catalyzed in vivo by DsbA and DsbB. Here we reconstitute this ox...
Significance: The introduction of disulfide bonds in proteins of the mitochondrial intermembrane spa...
Eukaryotic cells harbor membrane-enclosed compartments to spatially separate different biochemical p...
In this issue of Cell, Mesecke et al. (2005) show that there is a disulfide relay system in the inte...
In this issue of Cell, Mesecke et al. (2005) show that there is a disulfide relay system in the inte...
The identification of protein disulfide isomerase (PDI), almost 50 years ago, opened the way to the ...
AbstractThe compartment between the outer and the inner membranes of mitochondria, the intermembrane...
Mitochondria are fundamental intracellular organelles with key roles in important cellular processes...