Iron–sulfur (Fe–S) cluster metalloproteins conduct essential functions in nearly all contemporary forms of life. The nearly ubiquitous presence of Fe–S clusters and the fundamental requirement for Fe–S clusters in both aerobic and anaerobic Archaea, Bacteria, and Eukarya suggest that these clusters were likely integrated into central metabolic pathways early in the evolution of life prior to the widespread oxidation of Earth’s atmosphere. Intriguingly, Fe–S cluster-dependent metabolism is sensitive to disruption by oxygen because of the decreased bioavailability of ferric iron as well as direct oxidation of sulfur trafficking intermediates and Fe–S clusters by reactive oxygen species. This fact, coupled with the ubiquity of Fe–S clusters in...
Iron-sulfur (Fe–S) clusters are essential cofactors most commonly known for their role mediating ele...
AbstractFe/S clusters are co-factors of numerous proteins with important functions in metabolism, el...
SummaryThe facile ability of iron to gain and lose electrons has made iron an important participant ...
Iron–sulfur (Fe–S) cluster metalloproteins conduct essential functions in nearly all contemporary fo...
ABSTRACT: Iron−sulfur (Fe−S) cluster metalloproteins con-duct essential functions in nearly all cont...
International audienceIron–sulfur (Fe–S) clusters are ubiquitous cofactors essential for life. It is...
AbstractFe–S clusters play critical roles in cellular function throughout all three kingdoms of life...
AbstractIron–sulfur (Fe–S) clusters are ancient, ubiquitous cofactors composed of iron and inorganic...
International audienceIron-sulfur clusters (Fe-S) are amongst the most ancient and versatile inorgan...
Iron and sulfur are indispensable elements of every living cell, but on their own these elements are...
International audienceIron-sulfur (Fe–S) clusters are considered one of the most ancient and versati...
AbstractIron is a ubiquitous element in the universe. Ferrous iron (Fe(II)) was abundant in the prim...
Organisms from all kingdoms of life use iron–sulfur proteins (FeS-Ps) in a multitude of functional p...
AbstractIron–sulfur (Fe/S) clusters are important cofactors of numerous proteins involved in electro...
AbstractProteins containing iron–sulfur (Fe–S) clusters arose early in evolution and are essential t...
Iron-sulfur (Fe–S) clusters are essential cofactors most commonly known for their role mediating ele...
AbstractFe/S clusters are co-factors of numerous proteins with important functions in metabolism, el...
SummaryThe facile ability of iron to gain and lose electrons has made iron an important participant ...
Iron–sulfur (Fe–S) cluster metalloproteins conduct essential functions in nearly all contemporary fo...
ABSTRACT: Iron−sulfur (Fe−S) cluster metalloproteins con-duct essential functions in nearly all cont...
International audienceIron–sulfur (Fe–S) clusters are ubiquitous cofactors essential for life. It is...
AbstractFe–S clusters play critical roles in cellular function throughout all three kingdoms of life...
AbstractIron–sulfur (Fe–S) clusters are ancient, ubiquitous cofactors composed of iron and inorganic...
International audienceIron-sulfur clusters (Fe-S) are amongst the most ancient and versatile inorgan...
Iron and sulfur are indispensable elements of every living cell, but on their own these elements are...
International audienceIron-sulfur (Fe–S) clusters are considered one of the most ancient and versati...
AbstractIron is a ubiquitous element in the universe. Ferrous iron (Fe(II)) was abundant in the prim...
Organisms from all kingdoms of life use iron–sulfur proteins (FeS-Ps) in a multitude of functional p...
AbstractIron–sulfur (Fe/S) clusters are important cofactors of numerous proteins involved in electro...
AbstractProteins containing iron–sulfur (Fe–S) clusters arose early in evolution and are essential t...
Iron-sulfur (Fe–S) clusters are essential cofactors most commonly known for their role mediating ele...
AbstractFe/S clusters are co-factors of numerous proteins with important functions in metabolism, el...
SummaryThe facile ability of iron to gain and lose electrons has made iron an important participant ...