Iron sequestration inside the plant cell may be accomplished by ferritins, a class of proteins able to buffer and store this metal in a safe and soluble form. This protein has been shown in plastids and only recently in plant mitochondria. In this paper, we examined the localization of mitochondrial ferritin in different plant organs and its possible involvement in iron uptake and/or release. Ferritin was found only in mitochondria from young organs, such as roots, etiolated stems and, although to a lesser extent, developing leaves. Its presence was not influenced by iron in the hydroponic medium of culture, as well as by the induction of senescence through ethylene treatment. Lipoperoxidation, evaluated as formation of thiobarbituric acid ...
Fe is essential for all cells because it is the cofactor of numerous proteins, however, excess free ...
In plants, the iron storage protein ferritin can be targeted to both chloroplasts and mitochondria. ...
Mitochondria and chloroplasts are organelles with high iron demand that are particularly susceptible...
Intracellular Fe trafficking must satisfy both chloroplastic and mitochondrial demands for Fe withou...
Iron is an essential element for all living organisms, although it can be very toxic to cell. This d...
Iron is an essential element for all living organisms, although it can be very toxic to cell because...
In this work, evidence for the presence of ferritins in plant mitochondria is supplied. Mitochondria...
Iron is an essential element for all living organisms. Coordinated to metallo-protein active sites, ...
Although iron has a major role in mitochondrial activity, the processes of iron transport, trafficki...
Although iron has a major role in mitochondrial activity, the processes of iron transport, trafficki...
Ferritins are iron-storage proteins which, in Arabidopsis, have a clear role in protection against o...
for Fe without allowing its accumulation in the organelles in dangerous redox-active forms. Protein ...
Although iron has a major role in mitochondrial activity, the processes of iron transport, trafficki...
Iron (Fe) is the fourth most abundant element in the Earth’s crust, yet the availability of Fe to pl...
Ferritins are characterized by highly conserved three-dimensional structures similar to spherical sh...
Fe is essential for all cells because it is the cofactor of numerous proteins, however, excess free ...
In plants, the iron storage protein ferritin can be targeted to both chloroplasts and mitochondria. ...
Mitochondria and chloroplasts are organelles with high iron demand that are particularly susceptible...
Intracellular Fe trafficking must satisfy both chloroplastic and mitochondrial demands for Fe withou...
Iron is an essential element for all living organisms, although it can be very toxic to cell. This d...
Iron is an essential element for all living organisms, although it can be very toxic to cell because...
In this work, evidence for the presence of ferritins in plant mitochondria is supplied. Mitochondria...
Iron is an essential element for all living organisms. Coordinated to metallo-protein active sites, ...
Although iron has a major role in mitochondrial activity, the processes of iron transport, trafficki...
Although iron has a major role in mitochondrial activity, the processes of iron transport, trafficki...
Ferritins are iron-storage proteins which, in Arabidopsis, have a clear role in protection against o...
for Fe without allowing its accumulation in the organelles in dangerous redox-active forms. Protein ...
Although iron has a major role in mitochondrial activity, the processes of iron transport, trafficki...
Iron (Fe) is the fourth most abundant element in the Earth’s crust, yet the availability of Fe to pl...
Ferritins are characterized by highly conserved three-dimensional structures similar to spherical sh...
Fe is essential for all cells because it is the cofactor of numerous proteins, however, excess free ...
In plants, the iron storage protein ferritin can be targeted to both chloroplasts and mitochondria. ...
Mitochondria and chloroplasts are organelles with high iron demand that are particularly susceptible...