AbstractProteins containing iron–sulfur (Fe–S) clusters arose early in evolution and are essential to life. Organisms have evolved machinery consisting of specialized proteins that operate together to assemble Fe–S clusters efficiently so as to minimize cellular exposure to their toxic constituents: iron and sulfide ions. To date, the best studied system is the iron-sulfur cluster (isc) operon of Escherichia coli, and the eight ISC proteins it encodes. Our investigations over the past five years have identified two functional conformational states for the scaffold protein (IscU) and have shown that the other ISC proteins that interact with IscU prefer to bind one conformational state or the other. From analyses of the NMR spectroscopy-deriv...
Iron–sulfur (Fe/S) clusters (ISCs) are redox-active protein cofactors that their synthesis, transfer...
Iron–sulfur (Fe/S) clusters (ISCs) are redox-active protein cofactors that their synthesis, transfer...
AbstractIron–sulfur (Fe–S) clusters are versatile protein cofactors that require numerous components...
AbstractProteins containing iron–sulfur (Fe–S) clusters arose early in evolution and are essential t...
AbstractIron–sulfur (Fe–S) clusters are ancient, ubiquitous cofactors composed of iron and inorganic...
AbstractIron–sulfur (Fe/S) clusters are important cofactors of numerous proteins involved in electro...
AbstractProtein-bound iron sulfur clusters are prosthetic groups involved in several metabolic pathw...
AbstractFe/S clusters are co-factors of numerous proteins with important functions in metabolism, el...
Iron-sulfur (Fe-S) clusters are cofactors essential for life. Though the proteins that function in t...
AbstractIron–sulfur cluster biosynthesis depends on protein machineries, such as the ISC and SUF sys...
AbstractIscU from Escherichia coli, the scaffold protein for iron-sulfur cluster biosynthesis and de...
Iron and sulfur are indispensable elements of every living cell, but on their own these elements are...
AbstractFe–S clusters play critical roles in cellular function throughout all three kingdoms of life...
Iron-sulfur (FeS) clusters are protein cofactors that are ubiquitous in life, performing a wide rang...
Iron-sulfur (Fe-S) clusters are inorganic cofactors found throughout all domains of life. These clus...
Iron–sulfur (Fe/S) clusters (ISCs) are redox-active protein cofactors that their synthesis, transfer...
Iron–sulfur (Fe/S) clusters (ISCs) are redox-active protein cofactors that their synthesis, transfer...
AbstractIron–sulfur (Fe–S) clusters are versatile protein cofactors that require numerous components...
AbstractProteins containing iron–sulfur (Fe–S) clusters arose early in evolution and are essential t...
AbstractIron–sulfur (Fe–S) clusters are ancient, ubiquitous cofactors composed of iron and inorganic...
AbstractIron–sulfur (Fe/S) clusters are important cofactors of numerous proteins involved in electro...
AbstractProtein-bound iron sulfur clusters are prosthetic groups involved in several metabolic pathw...
AbstractFe/S clusters are co-factors of numerous proteins with important functions in metabolism, el...
Iron-sulfur (Fe-S) clusters are cofactors essential for life. Though the proteins that function in t...
AbstractIron–sulfur cluster biosynthesis depends on protein machineries, such as the ISC and SUF sys...
AbstractIscU from Escherichia coli, the scaffold protein for iron-sulfur cluster biosynthesis and de...
Iron and sulfur are indispensable elements of every living cell, but on their own these elements are...
AbstractFe–S clusters play critical roles in cellular function throughout all three kingdoms of life...
Iron-sulfur (FeS) clusters are protein cofactors that are ubiquitous in life, performing a wide rang...
Iron-sulfur (Fe-S) clusters are inorganic cofactors found throughout all domains of life. These clus...
Iron–sulfur (Fe/S) clusters (ISCs) are redox-active protein cofactors that their synthesis, transfer...
Iron–sulfur (Fe/S) clusters (ISCs) are redox-active protein cofactors that their synthesis, transfer...
AbstractIron–sulfur (Fe–S) clusters are versatile protein cofactors that require numerous components...