Mitochondrial iron transporter (MIT) genes are essential for mitochondrial acquisition/import of iron and vital to proper functioning of mitochondria. Unlike other organisms, research on the MITs in plants is limited. The present study provides comparative bioinformatics assays for the potato MIT gene (StMIT) as well as gene expression analyses. The phylogenetic analyses revealed monocots-dicot divergence in MIT proteins and it was also found clade specific motif diversity. In addition, docking analyses indicated that Asp172 and Gly100 residues to be identified as the closest residues binding to ferrous iron. The percentage of structure overlap of the StMIT 3D protein model with Arabidopsis, maize and rice MIT proteins was found between 80....
Genes encoding subunits of complex I (EC 1.6.5.3) of the mitochondrial respiratory chain vary in the...
Frataxin (FH) plays a crucial role in the biogenesis of mitochondria and the regulation of iron in t...
Iron (Fe) is the fourth most abundant element in the Earth’s crust, yet the availability of Fe to pl...
Mitochondrial iron transporter (MIT) genes are essential for mitochondrial acquisition/import of iro...
Mitochondrial iron (Fe) homeostasis is important for various cellular processes including heme synth...
Andean potato cultivars (Solanum tuberosum Group Andigena) represent a valuable source of genetic di...
Mitochondria utilize iron (Fe), but the proteins involved in mitochondrial Fe regulation have not be...
Mitochondria utilize iron (Fe), but the proteins involved in mitochondrial Fe regulation are not cha...
ABSTRACT Mitochondria utilize iron (Fe), but the proteins involved in mitochondrial Fe regulation ar...
In plants, iron (Fe) is essential for mitochondrial electron transport, heme, and Fe-sulphur (Fe-s) ...
FIT (Fer-like iron deficiency-induced transcription factor) is one of the key regulators in uptake o...
Iron has a major role in mitochondrial activity; the processes of iron transport, trafficking and ho...
Iron has a major role in mitochondrial as well as in chloroplast metabolism, however the processes i...
Mitochondria and chloroplasts are organelles with high iron demand that are particularly susceptible...
Background: Plants react to iron deficiency stress adopting different kind of adaptive responses. To...
Genes encoding subunits of complex I (EC 1.6.5.3) of the mitochondrial respiratory chain vary in the...
Frataxin (FH) plays a crucial role in the biogenesis of mitochondria and the regulation of iron in t...
Iron (Fe) is the fourth most abundant element in the Earth’s crust, yet the availability of Fe to pl...
Mitochondrial iron transporter (MIT) genes are essential for mitochondrial acquisition/import of iro...
Mitochondrial iron (Fe) homeostasis is important for various cellular processes including heme synth...
Andean potato cultivars (Solanum tuberosum Group Andigena) represent a valuable source of genetic di...
Mitochondria utilize iron (Fe), but the proteins involved in mitochondrial Fe regulation have not be...
Mitochondria utilize iron (Fe), but the proteins involved in mitochondrial Fe regulation are not cha...
ABSTRACT Mitochondria utilize iron (Fe), but the proteins involved in mitochondrial Fe regulation ar...
In plants, iron (Fe) is essential for mitochondrial electron transport, heme, and Fe-sulphur (Fe-s) ...
FIT (Fer-like iron deficiency-induced transcription factor) is one of the key regulators in uptake o...
Iron has a major role in mitochondrial activity; the processes of iron transport, trafficking and ho...
Iron has a major role in mitochondrial as well as in chloroplast metabolism, however the processes i...
Mitochondria and chloroplasts are organelles with high iron demand that are particularly susceptible...
Background: Plants react to iron deficiency stress adopting different kind of adaptive responses. To...
Genes encoding subunits of complex I (EC 1.6.5.3) of the mitochondrial respiratory chain vary in the...
Frataxin (FH) plays a crucial role in the biogenesis of mitochondria and the regulation of iron in t...
Iron (Fe) is the fourth most abundant element in the Earth’s crust, yet the availability of Fe to pl...