International audienceIron-sulfur clusters (Fe-S) are amongst the most ancient and versatile inorganic cofactors in nature which are used by proteins for fundamental biological processes. Multiprotein machineries (NIF, ISC, SUF) exist for Fe-S cluster biogenesis which are mainly conserved from bacteria to human. SUF system (sufABCDSE operon) plays a general role in many bacteria under conditions of iron limitation or oxidative stress. In this mini-review, we will summarize the current understanding of the molecular mechanism of Fe-S biogenesis by SUF. The advances in our understanding of the molecular aspects of SUF originate from biochemical, biophysical and recent structural studies. Combined with recent in vivo experiments, the understan...
Iron-sulfur (Fe-S) clusters are essential cofactors in various metalloproteins and are best known fo...
Iron-sulfur (Fe-S) clusters are essential cofactors in various metalloproteins and are best known fo...
Many essential cellular proteins use iron-sulfur (Fe-S) clusters as cofactors. These proteins often ...
International audienceIron-sulfur clusters (Fe-S) are amongst the most ancient and versatile inorgan...
International audienceIron-sulfur clusters (Fe-S) are amongst the most ancient and versatile inorgan...
International audienceIron-sulfur clusters (Fe-S) are amongst the most ancient and versatile inorgan...
International audienceIron-sulfur clusters (Fe-S) are amongst the most ancient and versatile inorgan...
AbstractFe–S clusters play critical roles in cellular function throughout all three kingdoms of life...
In vivo biogenesis of iron-sulfur (Fe-S) cluster cofactors requires complex biosynthetic machinery t...
AbstractFe–S clusters play critical roles in cellular function throughout all three kingdoms of life...
International audienceIron-sulfur (Fe–S) clusters are considered one of the most ancient and versati...
International audienceIron-sulfur (Fe–S) clusters are considered one of the most ancient and versati...
International audienceIron-sulfur (Fe–S) clusters are considered one of the most ancient and versati...
Iron-sulfur (Fe-S) clusters serve as a fundamental inorganic constituent of living cells ranging fro...
Iron-sulfur (Fe-S) clusters serve as a fundamental inorganic constituent of living cells ranging fro...
Iron-sulfur (Fe-S) clusters are essential cofactors in various metalloproteins and are best known fo...
Iron-sulfur (Fe-S) clusters are essential cofactors in various metalloproteins and are best known fo...
Many essential cellular proteins use iron-sulfur (Fe-S) clusters as cofactors. These proteins often ...
International audienceIron-sulfur clusters (Fe-S) are amongst the most ancient and versatile inorgan...
International audienceIron-sulfur clusters (Fe-S) are amongst the most ancient and versatile inorgan...
International audienceIron-sulfur clusters (Fe-S) are amongst the most ancient and versatile inorgan...
International audienceIron-sulfur clusters (Fe-S) are amongst the most ancient and versatile inorgan...
AbstractFe–S clusters play critical roles in cellular function throughout all three kingdoms of life...
In vivo biogenesis of iron-sulfur (Fe-S) cluster cofactors requires complex biosynthetic machinery t...
AbstractFe–S clusters play critical roles in cellular function throughout all three kingdoms of life...
International audienceIron-sulfur (Fe–S) clusters are considered one of the most ancient and versati...
International audienceIron-sulfur (Fe–S) clusters are considered one of the most ancient and versati...
International audienceIron-sulfur (Fe–S) clusters are considered one of the most ancient and versati...
Iron-sulfur (Fe-S) clusters serve as a fundamental inorganic constituent of living cells ranging fro...
Iron-sulfur (Fe-S) clusters serve as a fundamental inorganic constituent of living cells ranging fro...
Iron-sulfur (Fe-S) clusters are essential cofactors in various metalloproteins and are best known fo...
Iron-sulfur (Fe-S) clusters are essential cofactors in various metalloproteins and are best known fo...
Many essential cellular proteins use iron-sulfur (Fe-S) clusters as cofactors. These proteins often ...