Iron is an essential micronutrient for all eukaryotic organisms because it participates as a redox cofactor in multiple metabolic processes. Iron bioavailability is highly restricted due to the low solubility of its oxidized form, frequently leading to iron deficiency anemia. The baker’s yeast Saccharomyces cerevisiae is used as a model organism for iron homeostasis studies, but also as a food supplement and fermentative microorganism in the food industry. Yeast cells use the vacuolar Ccc1 transporter to detoxify and store excess iron in the vacuoles. Here, we modulate CCC1 expression and properties to increase iron extraction from the environment. We show that constitutive expression of full-length CCC1 is toxic, whereas deletion of its cy...
Iron is an essential micronutrient for all eukaryotic organisms because it participates as a redox c...
The metal ions, Cu 2+/+ and Fe 3+/2+ , are essential co-factors for a wide variety of enzymatic rea...
Iron is central in many essential intracellular processes, and as a result, balancing its level is c...
Iron is an essential micronutrient for all eukaryotic organisms because it participates as a redox c...
In yeast, iron storage and detoxification depend on the Ccc1 transporter that mediates iron accumula...
All eukaryotic organisms rely on iron as an essential micronutrient for life because it participates...
Iron is an essential micronutrient for all eukaryotic organisms because it participates as a redox c...
Iron is an essential micronutrient for most living beings since it participates as a redox active co...
BackgroundIron-deficiency anemia is the most prevalent form of anemia world-wide. The yeast Saccharo...
Abstract Background Iron-deficiency anemia is the mos...
Fungi, including the yeast Saccharomyces cerevisiae, lack ferritin and use vacuoles as iron storage ...
<p>The ability of iron (Fe) to easily transition between two valence states makes it a preferred co-...
The metal ions, Cu2+/+ and Fe3+/2+, are essential co-factors for a wide variety of enzymatic reactio...
<div><p>The budding yeast <em>Saccharomyces cerevisiae</em> has developed several mechanisms to avoi...
The budding yeast Saccharomyces cerevisiae has developed several mechanisms to avoid either the dras...
Iron is an essential micronutrient for all eukaryotic organisms because it participates as a redox c...
The metal ions, Cu 2+/+ and Fe 3+/2+ , are essential co-factors for a wide variety of enzymatic rea...
Iron is central in many essential intracellular processes, and as a result, balancing its level is c...
Iron is an essential micronutrient for all eukaryotic organisms because it participates as a redox c...
In yeast, iron storage and detoxification depend on the Ccc1 transporter that mediates iron accumula...
All eukaryotic organisms rely on iron as an essential micronutrient for life because it participates...
Iron is an essential micronutrient for all eukaryotic organisms because it participates as a redox c...
Iron is an essential micronutrient for most living beings since it participates as a redox active co...
BackgroundIron-deficiency anemia is the most prevalent form of anemia world-wide. The yeast Saccharo...
Abstract Background Iron-deficiency anemia is the mos...
Fungi, including the yeast Saccharomyces cerevisiae, lack ferritin and use vacuoles as iron storage ...
<p>The ability of iron (Fe) to easily transition between two valence states makes it a preferred co-...
The metal ions, Cu2+/+ and Fe3+/2+, are essential co-factors for a wide variety of enzymatic reactio...
<div><p>The budding yeast <em>Saccharomyces cerevisiae</em> has developed several mechanisms to avoi...
The budding yeast Saccharomyces cerevisiae has developed several mechanisms to avoid either the dras...
Iron is an essential micronutrient for all eukaryotic organisms because it participates as a redox c...
The metal ions, Cu 2+/+ and Fe 3+/2+ , are essential co-factors for a wide variety of enzymatic rea...
Iron is central in many essential intracellular processes, and as a result, balancing its level is c...