AbstractIscA and SufA are paralogous proteins that play crucial roles in the biosynthesis of Fe–S clusters, perhaps through a mechanism involving transient Fe–S cluster formation. We have determined the crystal structure of E. coli SufA at 2.7Å resolution. SufA exists as a homodimer, in contrast to the tetrameric organization of IscA. Furthermore, a C-terminal segment containing two essential cysteine residues (Cys-Gly-Cys), which is disordered in the IscA structure, is clearly visible in one molecule (the α1 subunit) of the SufA homodimer. Although this segment is disordered in the other molecule (the α2 subunit), computer modeling of this segment based on the well-defined conformation of α1 subunit suggests that the four cysteine residues...
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...
AbstractFe–S clusters play critical roles in cellular function throughout all three kingdoms of life...
AbstractIscA and SufA are paralogous proteins that play crucial roles in the biosynthesis of Fe–S cl...
The SufA protein from Escherichia coli is a homodimeric scaffold protein, allowing the formation of ...
The SufA protein from Escherichia coli is a homodimeric scaffold protein, allowing the formation of ...
IscA belongs to an ancient family of proteins responsible for iron-sulfur cluster assembly in essent...
AbstractSufC is an ATPase component of the SUF machinery, which is involved in the biosynthesis of F...
[Fe-S] proteins are ubiquitous enzymes which play key roles within all living organisms. The biosynt...
[Fe-S] proteins are ubiquitous enzymes which play key roles within all living organisms. The biosynt...
Background: Iron-sulfur clusters are ubiquitous and evolutionarily ancient inorganic prosthetic grou...
Background: Iron-sulfur clusters are ubiquitous and evolutionarily ancient inorganic prosthetic grou...
Background: Iron-sulfur clusters are ubiquitous and evolutionarily ancient inorganic prosthetic grou...
AbstractIron–sulfur [Fe–S] clusters are inorganic prosthetic groups that play essential roles in all...
Bacteria use three distinct systems for iron-sulfur (Fe/S) cluster biogenesis: the ISC, SUF, and NIF...
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...
AbstractFe–S clusters play critical roles in cellular function throughout all three kingdoms of life...
AbstractIscA and SufA are paralogous proteins that play crucial roles in the biosynthesis of Fe–S cl...
The SufA protein from Escherichia coli is a homodimeric scaffold protein, allowing the formation of ...
The SufA protein from Escherichia coli is a homodimeric scaffold protein, allowing the formation of ...
IscA belongs to an ancient family of proteins responsible for iron-sulfur cluster assembly in essent...
AbstractSufC is an ATPase component of the SUF machinery, which is involved in the biosynthesis of F...
[Fe-S] proteins are ubiquitous enzymes which play key roles within all living organisms. The biosynt...
[Fe-S] proteins are ubiquitous enzymes which play key roles within all living organisms. The biosynt...
Background: Iron-sulfur clusters are ubiquitous and evolutionarily ancient inorganic prosthetic grou...
Background: Iron-sulfur clusters are ubiquitous and evolutionarily ancient inorganic prosthetic grou...
Background: Iron-sulfur clusters are ubiquitous and evolutionarily ancient inorganic prosthetic grou...
AbstractIron–sulfur [Fe–S] clusters are inorganic prosthetic groups that play essential roles in all...
Bacteria use three distinct systems for iron-sulfur (Fe/S) cluster biogenesis: the ISC, SUF, and NIF...
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...
AbstractFe–S clusters play critical roles in cellular function throughout all three kingdoms of life...