Biogenesis and recycling of iron–sulfur (Fe–S) clusters play important roles in the iron homeostasis mechanisms involved in mitochondrial function. In Saccharomyces cerevisiae, the Fe–S clusters are assembled into apoproteins by the iron–sulfur cluster machinery (ISC). The aim of the present study was to determine the effects of ISC gene deletion and consequent iron release under oxidative stress conditions on mitochondrial functionality in S. cerevisiae. Reactive oxygen species (ROS) generation, caused by H2O2, menadione, or ethanol, was associated with a loss of iron homeostasis and exacerbated by ISC system dysfunction. ISC mutants showed increased free Fe2+ content, exacerbated by ROS-inducers, causing an increase in ROS, which was decr...
Iron is an essential element for life. It is involved in a number of biological processes, including...
Iron-sulfur (Fe/S) clusters are inorganic cofactors of many proteins found in nearly all prokaryotic...
AbstractMitochondria play a key role in iron metabolism in that they synthesize heme, assemble iron–...
<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...
<p>The [2Fe–2S] commonly carried by the multi-protein complex (Ssq1-Jac1-Mge1-Grx5) can also be asse...
The related study has confirmed that in Saccharomyces cerevisiae, iba57 protein participates in matu...
AbstractIron–sulfur (Fe/S) clusters are important cofactors of numerous proteins involved in electro...
Superoxide dismutase 2 (SOD2) is one of the rare mitochondrial enzymes evolved to use manganese as a...
AbstractFriedreich’s ataxia is caused by a deficit in the mitochondrial protein frataxin. The presen...
SummaryIron-sulfur (Fe-S) clusters are required for the functions of mitochondrial aconitase, mammal...
Mitochondrial dysfunction has been implicated for a wide range of human diseases. One of the major ...
Iron is a redox active element that functions as an essential cofactor in multiple metabolic pathway...
Iron is an essential micronutrient for all eukaryotic organisms because it participates as a redox c...
Friedreich's ataxia is caused by a deficit in the mitochondrial protein frataxin. The present work d...
Iron is an essential element for life. It is involved in a number of biological processes, including...
Iron-sulfur (Fe/S) clusters are inorganic cofactors of many proteins found in nearly all prokaryotic...
AbstractMitochondria play a key role in iron metabolism in that they synthesize heme, assemble iron–...
<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...
<p>The [2Fe–2S] commonly carried by the multi-protein complex (Ssq1-Jac1-Mge1-Grx5) can also be asse...
The related study has confirmed that in Saccharomyces cerevisiae, iba57 protein participates in matu...
AbstractIron–sulfur (Fe/S) clusters are important cofactors of numerous proteins involved in electro...
Superoxide dismutase 2 (SOD2) is one of the rare mitochondrial enzymes evolved to use manganese as a...
AbstractFriedreich’s ataxia is caused by a deficit in the mitochondrial protein frataxin. The presen...
SummaryIron-sulfur (Fe-S) clusters are required for the functions of mitochondrial aconitase, mammal...
Mitochondrial dysfunction has been implicated for a wide range of human diseases. One of the major ...
Iron is a redox active element that functions as an essential cofactor in multiple metabolic pathway...
Iron is an essential micronutrient for all eukaryotic organisms because it participates as a redox c...
Friedreich's ataxia is caused by a deficit in the mitochondrial protein frataxin. The present work d...
Iron is an essential element for life. It is involved in a number of biological processes, including...
Iron-sulfur (Fe/S) clusters are inorganic cofactors of many proteins found in nearly all prokaryotic...
AbstractMitochondria play a key role in iron metabolism in that they synthesize heme, assemble iron–...