AbstractThe structural determinants required for ferroxidase activity by the yeast multicopper oxidase Fet3 have been partially clarified by site-directed mutagenesis based on homology modeling. Glu-185 and Tyr-354 were substituted with Ala and Phe, respectively. Fet3 E185A retained ca. 5% residual ferroxidase catalytic efficiency, and almost 40% oxidase efficiency. On the other hand, Fet3 Y354F exhibited 50% residual efficiency as a ferroxidase and more than 70% as an oxidase. These results provide new insights in the mechanism of iron binding and oxidation by Fet3, establishing the essential role of Glu-185 and Tyr-354, and allowing to dissect ferroxidase from non-iron oxidase activity
Ferritins are iron-storage nanocage proteins that catalyze the oxidation of Fe2+ to Fe3+ at ferroxid...
Human H and Rana catesbeiana H′ subunits in vertebrate ferritin protein cages catalyze the Fe(II)oxi...
Human H and Rana catesbeiana H′ subunits in vertebrate ferritin protein cages catalyze the Fe(II)oxi...
The structural determinants required for ferroxidase activity by the yeast multicopper oxidase Fet3 ...
AbstractThe structural determinants required for ferroxidase activity by the yeast multicopper oxida...
AbstractThe role of residues predicted to be involved in the binding of iron by the yeast ferroxidas...
The role of residues predicted to be involved in the binding of iron by the yeast ferroxidase Fet3 h...
AbstractThe role of residues predicted to be involved in the binding of iron by the yeast ferroxidas...
Site-directed mutagenesis was performed on a set of six aspartate residues of Fet3, the multicopper ...
Fet3, the multicopper oxidase of yeast, oxidizes extracellular ferrous iron which is then transporte...
AbstractThe Fet3 protein in Saccharomyces cerevisiae and mammalian ceruloplasmin are multicopper oxi...
Multi-copper oxidases (MCO) share a common molecular architecture and the use of copper ions as cofa...
High-affinity iron uptake by yeast cells appears to require the presence of a complex formed on the ...
Ferritins are iron-storage nanocage proteins that catalyze the oxidation of Fe2+ to Fe3+ at ferroxid...
Ferritins are iron-storage nanocage proteins that catalyze the oxidation of Fe2+ to Fe3+ at ferroxid...
Ferritins are iron-storage nanocage proteins that catalyze the oxidation of Fe2+ to Fe3+ at ferroxid...
Human H and Rana catesbeiana H′ subunits in vertebrate ferritin protein cages catalyze the Fe(II)oxi...
Human H and Rana catesbeiana H′ subunits in vertebrate ferritin protein cages catalyze the Fe(II)oxi...
The structural determinants required for ferroxidase activity by the yeast multicopper oxidase Fet3 ...
AbstractThe structural determinants required for ferroxidase activity by the yeast multicopper oxida...
AbstractThe role of residues predicted to be involved in the binding of iron by the yeast ferroxidas...
The role of residues predicted to be involved in the binding of iron by the yeast ferroxidase Fet3 h...
AbstractThe role of residues predicted to be involved in the binding of iron by the yeast ferroxidas...
Site-directed mutagenesis was performed on a set of six aspartate residues of Fet3, the multicopper ...
Fet3, the multicopper oxidase of yeast, oxidizes extracellular ferrous iron which is then transporte...
AbstractThe Fet3 protein in Saccharomyces cerevisiae and mammalian ceruloplasmin are multicopper oxi...
Multi-copper oxidases (MCO) share a common molecular architecture and the use of copper ions as cofa...
High-affinity iron uptake by yeast cells appears to require the presence of a complex formed on the ...
Ferritins are iron-storage nanocage proteins that catalyze the oxidation of Fe2+ to Fe3+ at ferroxid...
Ferritins are iron-storage nanocage proteins that catalyze the oxidation of Fe2+ to Fe3+ at ferroxid...
Ferritins are iron-storage nanocage proteins that catalyze the oxidation of Fe2+ to Fe3+ at ferroxid...
Human H and Rana catesbeiana H′ subunits in vertebrate ferritin protein cages catalyze the Fe(II)oxi...
Human H and Rana catesbeiana H′ subunits in vertebrate ferritin protein cages catalyze the Fe(II)oxi...