In eukaryotes, sulfur is mobilized for incorporation into multiple biosynthetic pathways by a cysteine desulfurase complex that consists of a catalytic subunit (NFS1), LYR protein (ISD11), and acyl carrier protein (ACP). This NFS1-ISD11-ACP (SDA) complex forms the core of the iron-sulfur (Fe-S) assembly complex and associates with assembly proteins ISCU2, frataxin (FXN), and ferredoxin to synthesize Fe-S clusters. Here we present crystallographic and electron microscopic structures of the SDA complex coupled to enzyme kinetic and cell-based studies to provide structure-function properties of a mitochondrial cysteine desulfurase. Unlike prokaryotic cysteine desulfurases, the SDA structure adopts an unexpected architecture in which a pair of ...
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...
Iron sulfur (Fe-S) clusters are essential cofactors that function in electron transport, catalyzing ...
Iron-sulfur (Fe-S) clusters are inorganic cofactors found throughout all domains of life. These clus...
Iron-sulfur (Fe-S) clusters are essential cofactors and are found in all branches of life. In eukary...
Iron–sulfur clusters (Fe–S or ISC) are essential cofactors that function in a wide range of biologic...
Maturation of iron-sulphur (Fe/S) proteins involves complex biosynthetic machinery. In vivo synthesi...
International audienceIron-sulfur (Fe-S) cluster-containing proteins are essential components of cel...
The chemical and electronic variability of Fe-S clusters are surely key factors for why these cofact...
AbstractProteins containing iron–sulfur (Fe–S) clusters arose early in evolution and are essential t...
Iron-sulfur (Fe-S) clusters are ubiquitous protein cofactors that are required for some of the most ...
Iron-sulfur (Fe/S) clusters are inorganic cofactors of many proteins found in nearly all prokaryotic...
Iron-sulfur clusters are essential cofactors in many biochemical processes. ISD11, one of the subuni...
AbstractIron–sulfur (Fe/S) clusters are important cofactors of numerous proteins involved in electro...
Iron-sulfur clusters are protein cofactors that are critical for all life forms. Elaborate multi-com...
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...
Iron sulfur (Fe-S) clusters are essential cofactors that function in electron transport, catalyzing ...
Iron-sulfur (Fe-S) clusters are inorganic cofactors found throughout all domains of life. These clus...
Iron-sulfur (Fe-S) clusters are essential cofactors and are found in all branches of life. In eukary...
Iron–sulfur clusters (Fe–S or ISC) are essential cofactors that function in a wide range of biologic...
Maturation of iron-sulphur (Fe/S) proteins involves complex biosynthetic machinery. In vivo synthesi...
International audienceIron-sulfur (Fe-S) cluster-containing proteins are essential components of cel...
The chemical and electronic variability of Fe-S clusters are surely key factors for why these cofact...
AbstractProteins containing iron–sulfur (Fe–S) clusters arose early in evolution and are essential t...
Iron-sulfur (Fe-S) clusters are ubiquitous protein cofactors that are required for some of the most ...
Iron-sulfur (Fe/S) clusters are inorganic cofactors of many proteins found in nearly all prokaryotic...
Iron-sulfur clusters are essential cofactors in many biochemical processes. ISD11, one of the subuni...
AbstractIron–sulfur (Fe/S) clusters are important cofactors of numerous proteins involved in electro...
Iron-sulfur clusters are protein cofactors that are critical for all life forms. Elaborate multi-com...
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...
Iron sulfur (Fe-S) clusters are essential cofactors that function in electron transport, catalyzing ...