Mitochondria are fundamental intracellular organelles with key roles in important cellular processes like energy production, Fe/S cluster biogenesis, and homeostasis of lipids and inorganic ions. Mitochondrial dysfunction is consequently linked to many human pathologies (cancer, diabetes, neurodegeneration, stroke) and apoptosis. Mitochondrial biogenesis relies on protein import as most mitochondrial proteins (about 10-15% of the human proteome) are imported after their synthesis in the cytosol. Over the last several years many mitochondrial translocation pathways have been discovered. Among them, the import pathway that targets proteins to the intermembrane space (IMS) stands out as it is the only one that couples import to folding and oxi...
SummaryMost mitochondrial proteins are synthesized in the cytosol and directed into the organelle; m...
SummaryThe mitochondrial disulfide relay system of Mia40 and Erv1/ALR facilitates import of the smal...
Disulfide bond formation is a crucial step for oxidative folding and necessary for the acquisition o...
AbstractMany newly synthesized proteins obtain disulfide bonds in the bacterial periplasm, the endop...
International audienceMitochondria are critical for several cellular functions as they control metab...
AbstractProtein translocation pathways to the mitochondrial matrix and inner membrane have been well...
Oxidative folding in the mitochondrial intermembrane space (IMS) is a key cellular event associated ...
The disulfide relay system found in the intermembrane space (IMS) of mitochondria is an essential pa...
AbstractWhen thinking of the mitochondrial intermembrane space we envisage a small compartment that ...
Mitochondria are organelles that play a central role in cellular metabolism, as they are responsible...
SummaryWe describe here a pathway for the import of proteins into the intermembrane space (IMS) of m...
SummaryMost mitochondrial proteins are encoded by nuclear DNA, synthesized in the cytoplasm, and imp...
Significance: The introduction of disulfide bonds in proteins of the mitochondrial intermembrane spa...
AbstractThe thiol oxidase Erv1 and the redox-regulated receptor Mia40/Tim40 are components of a disu...
A redox-regulated import pathway consisting of Mia40 and Erv1 was identified to mediate the import o...
SummaryMost mitochondrial proteins are synthesized in the cytosol and directed into the organelle; m...
SummaryThe mitochondrial disulfide relay system of Mia40 and Erv1/ALR facilitates import of the smal...
Disulfide bond formation is a crucial step for oxidative folding and necessary for the acquisition o...
AbstractMany newly synthesized proteins obtain disulfide bonds in the bacterial periplasm, the endop...
International audienceMitochondria are critical for several cellular functions as they control metab...
AbstractProtein translocation pathways to the mitochondrial matrix and inner membrane have been well...
Oxidative folding in the mitochondrial intermembrane space (IMS) is a key cellular event associated ...
The disulfide relay system found in the intermembrane space (IMS) of mitochondria is an essential pa...
AbstractWhen thinking of the mitochondrial intermembrane space we envisage a small compartment that ...
Mitochondria are organelles that play a central role in cellular metabolism, as they are responsible...
SummaryWe describe here a pathway for the import of proteins into the intermembrane space (IMS) of m...
SummaryMost mitochondrial proteins are encoded by nuclear DNA, synthesized in the cytoplasm, and imp...
Significance: The introduction of disulfide bonds in proteins of the mitochondrial intermembrane spa...
AbstractThe thiol oxidase Erv1 and the redox-regulated receptor Mia40/Tim40 are components of a disu...
A redox-regulated import pathway consisting of Mia40 and Erv1 was identified to mediate the import o...
SummaryMost mitochondrial proteins are synthesized in the cytosol and directed into the organelle; m...
SummaryThe mitochondrial disulfide relay system of Mia40 and Erv1/ALR facilitates import of the smal...
Disulfide bond formation is a crucial step for oxidative folding and necessary for the acquisition o...