The MIA40 pathway is a novel import pathway in mitochondria specific for cysteine-rich proteins of the intermembrane space (IMS). The newly synthesised precursors are trapped in the IMS by a disulfide relay mechanism that involves introduction of disulfides from the sulfhydryl oxidase Erv1 to the redox-regulated import receptor Mia40 and then on to the substrate. This thiol–disulfide exchange mechanism is essential for the import and oxidative folding of the incoming cysteine-rich substrate proteins. In this chapter we will describe the experimental methods that have been developed in order to study and characterise disulfide-trapped intermediates in yeast mitochondria
Significance: The introduction of disulfide bonds in proteins of the mitochondrial intermembrane spa...
The biogenesis of mitochondrial intermembrane space proteins depends on specific machinery that tran...
AbstractThe thiol oxidase Erv1 and the redox-regulated receptor Mia40/Tim40 are components of a disu...
SummaryWe describe here a pathway for the import of proteins into the intermembrane space (IMS) of m...
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...
Disulfide bond formation is a crucial step for oxidative folding and necessary for the acquisition o...
A redox-regulated import pathway consisting of Mia40 and Erv1 was identified to mediate the import o...
AbstractThe compartment between the outer and the inner membranes of mitochondria, the intermembrane...
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...
Eukaryotic cells harbor membrane-enclosed compartments to spatially separate different biochemical p...
ABSTRACT The mitochondrial intermembrane space assembly (MIA) pathway is generally considered to be ...
Erv1 and Mia40 constitute the two important components of the disulfide relay system that mediates o...
Abstract The disulfide relay system found in the intermembrane space (IMS) of mitochondria is an ess...
Significance: The introduction of disulfide bonds in proteins of the mitochondrial intermembrane spa...
The biogenesis of mitochondrial intermembrane space proteins depends on specific machinery that tran...
AbstractThe thiol oxidase Erv1 and the redox-regulated receptor Mia40/Tim40 are components of a disu...
SummaryWe describe here a pathway for the import of proteins into the intermembrane space (IMS) of m...
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...
Disulfide bond formation is a crucial step for oxidative folding and necessary for the acquisition o...
A redox-regulated import pathway consisting of Mia40 and Erv1 was identified to mediate the import o...
AbstractThe compartment between the outer and the inner membranes of mitochondria, the intermembrane...
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...
Eukaryotic cells harbor membrane-enclosed compartments to spatially separate different biochemical p...
ABSTRACT The mitochondrial intermembrane space assembly (MIA) pathway is generally considered to be ...
Erv1 and Mia40 constitute the two important components of the disulfide relay system that mediates o...
Abstract The disulfide relay system found in the intermembrane space (IMS) of mitochondria is an ess...
Significance: The introduction of disulfide bonds in proteins of the mitochondrial intermembrane spa...
The biogenesis of mitochondrial intermembrane space proteins depends on specific machinery that tran...
AbstractThe thiol oxidase Erv1 and the redox-regulated receptor Mia40/Tim40 are components of a disu...