Superoxide dismutase 2 (SOD2) is one of the rare mitochondrial enzymes evolved to use manganese as a cofactor over the more abundant element iron. Although mitochondrial iron does not normally bind SOD2, iron will misincorporate into Saccharomyces cerevisiae Sod2p when cells are starved for manganese or when mitochondrial iron homeostasis is disrupted by mutations in yeast grx5, ssq1, and mtm1. We report here that such changes in mitochondrial manganese and iron similarly affect cofactor selection in a heterologously expressed Escherichia coli Mn-SOD, but not a highly homologous Fe-SOD. By x-ray absorption near edge structure and extended x-ray absorption fine structure analyses of isolated mitochondria, we find that misincorporation of iro...
Yeast Mrs3p and Mrs4p are evolutionarily conserved mitochondrial carrier proteins that transport iro...
International audienceBackground: Friedreich's ataxia results from a decreased expression of the nuc...
Iron-sulfur (Fe/S) proteins are located in mitochondria, cytosol, and nucleus. Mitochondrial Fe/S pr...
Superoxide dismutase 2 (SOD2) is one of the rare mitochondrial enzymes evolved to use manganese as a...
Iron overload is involved in several pathological conditions, including Friedreich ataxia, a disease...
Biogenesis and recycling of iron–sulfur (Fe–S) clusters play important roles in the iron homeostasis...
<div><p>Biogenesis and recycling of iron–sulfur (Fe–S) clusters play important roles in the iron hom...
In the yeast Saccharomyces cerevisiae, the transcription factor Aft1P regulates the expression of nu...
AbstractSuperoxide dismutases (SOD) are important anti-oxidant enzymes that guard against superoxide...
We have generated a site‐directed mutant of the manganese superoxide dismutase SOD‐3 of C.elegans (M...
Friedreich's ataxia is caused by a deficit in the mitochondrial protein frataxin. The present work d...
AbstractFriedreich’s ataxia is caused by a deficit in the mitochondrial protein frataxin. The presen...
ABSTRACT: Fe and Mn are both entrained to the same chemical reaction in apparently superimposable su...
International audienceFrataxin is a conserved mitochondrial protein deficient in patients with Fried...
Mitochondrial iron is required for the biosynthesis of Fe-S clusters and heme, critical enzyme cofac...
Yeast Mrs3p and Mrs4p are evolutionarily conserved mitochondrial carrier proteins that transport iro...
International audienceBackground: Friedreich's ataxia results from a decreased expression of the nuc...
Iron-sulfur (Fe/S) proteins are located in mitochondria, cytosol, and nucleus. Mitochondrial Fe/S pr...
Superoxide dismutase 2 (SOD2) is one of the rare mitochondrial enzymes evolved to use manganese as a...
Iron overload is involved in several pathological conditions, including Friedreich ataxia, a disease...
Biogenesis and recycling of iron–sulfur (Fe–S) clusters play important roles in the iron homeostasis...
<div><p>Biogenesis and recycling of iron–sulfur (Fe–S) clusters play important roles in the iron hom...
In the yeast Saccharomyces cerevisiae, the transcription factor Aft1P regulates the expression of nu...
AbstractSuperoxide dismutases (SOD) are important anti-oxidant enzymes that guard against superoxide...
We have generated a site‐directed mutant of the manganese superoxide dismutase SOD‐3 of C.elegans (M...
Friedreich's ataxia is caused by a deficit in the mitochondrial protein frataxin. The present work d...
AbstractFriedreich’s ataxia is caused by a deficit in the mitochondrial protein frataxin. The presen...
ABSTRACT: Fe and Mn are both entrained to the same chemical reaction in apparently superimposable su...
International audienceFrataxin is a conserved mitochondrial protein deficient in patients with Fried...
Mitochondrial iron is required for the biosynthesis of Fe-S clusters and heme, critical enzyme cofac...
Yeast Mrs3p and Mrs4p are evolutionarily conserved mitochondrial carrier proteins that transport iro...
International audienceBackground: Friedreich's ataxia results from a decreased expression of the nuc...
Iron-sulfur (Fe/S) proteins are located in mitochondria, cytosol, and nucleus. Mitochondrial Fe/S pr...