ABSTRACT: Strains lacking and overexpressing the vacuolar iron (Fe) importer CCC1 were characterized using Mössbauer and EPR spectroscopies. Vacuolar Fe import is impeded in Δccc1 cells and enhanced in CCC1-up cells, causing vacuolar Fe in these strains to decline and accumulate, respectively, relative to WT cells. Cytosolic Fe levels should behave oppositely. The Fe content of Δccc1 cells grown under low-Fe conditions was similar to that in WT cells. Most Fe was mitochondrial with some nonheme high spin (NHHS) FeII present. Δccc1 cells grown with increasing Fe concentration in the medium contained less total Fe, less vacuolar HS FeIII, and more NHHS FeII than in comparable WT cells. As the Fe concentration in the growth medium increased, ...
The majority of Fe in Fe-replete yeast cells is located in vacuoles. These acidic organelles store F...
Iron is an essential micronutrient for most living beings since it participates as a redox active co...
Transition metals play essential roles in biological systems, but Fe can also be toxic to cells. In ...
Strains lacking and overexpressing the vacuolar iron (Fe) importer <i>CCC1</i> were characterized us...
feorganism to study eukaryotic iron metabolism. Much Fe enters the cytosol and shuttles to the mitoc...
Fermenting cells were grown under Fe-deficient and Fe-overload conditions, and their Fe contents wer...
Fe metabolism in budding yeast Saccharomyces cerevisiae was studied using an integrative systems-lev...
The Fe content of Jurkat cells grown on transferrin-bound iron (TBI) and Fe<sup>III</sup> citrate (F...
Iron is an essential element for life. It is involved in a number of biological processes, including...
dissertationIron is an essential nutrient for all eukaryotes and involved in many biological proces...
Iron is an essential micronutrient for all eukaryotic organisms because it participates as a redox c...
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...
Cryptococcus neoformans is an opportunistic fungal pathogen with worldwide distribution. Pathogenes...
thesisIron is an essential element for all living organisms. It is crucial in oxygen transport, ele...
The majority of Fe in Fe-replete yeast cells is located in vacuoles. These acidic organelles store F...
Iron is an essential micronutrient for most living beings since it participates as a redox active co...
Transition metals play essential roles in biological systems, but Fe can also be toxic to cells. In ...
Strains lacking and overexpressing the vacuolar iron (Fe) importer <i>CCC1</i> were characterized us...
feorganism to study eukaryotic iron metabolism. Much Fe enters the cytosol and shuttles to the mitoc...
Fermenting cells were grown under Fe-deficient and Fe-overload conditions, and their Fe contents wer...
Fe metabolism in budding yeast Saccharomyces cerevisiae was studied using an integrative systems-lev...
The Fe content of Jurkat cells grown on transferrin-bound iron (TBI) and Fe<sup>III</sup> citrate (F...
Iron is an essential element for life. It is involved in a number of biological processes, including...
dissertationIron is an essential nutrient for all eukaryotes and involved in many biological proces...
Iron is an essential micronutrient for all eukaryotic organisms because it participates as a redox c...
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...
Cryptococcus neoformans is an opportunistic fungal pathogen with worldwide distribution. Pathogenes...
thesisIron is an essential element for all living organisms. It is crucial in oxygen transport, ele...
The majority of Fe in Fe-replete yeast cells is located in vacuoles. These acidic organelles store F...
Iron is an essential micronutrient for most living beings since it participates as a redox active co...
Transition metals play essential roles in biological systems, but Fe can also be toxic to cells. In ...