Iron–sulfur clusters (Fe–S or ISC) are essential cofactors that function in a wide range of biological pathways. In mammalian cells, Fe–S biosynthesis primarily relies on mitochondria and involves a concerted group of evolutionary-conserved proteins forming the ISC pathway. In the early stage of the ISC pathway, the Fe–S core complex is required for de novo assembly of Fe–S. In humans, the Fe–S core complex comprises the cysteine desulfurase NFS1, the scaffold protein ISCU2, frataxin (FXN), the ferredoxin FDX2, and regulatory/accessory proteins ISD11 and Acyl Carrier Protein (ACP). In recent years, the field has made significant advances in unraveling the structure of the Fe–S core complex and the mechanism underlying its function. Herein, ...
AbstractFe/S clusters are co-factors of numerous proteins with important functions in metabolism, el...
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 (ISCs) are versatile, ancient co-factors of proteins that are involved i...
AbstractMitochondria play a key role in iron metabolism in that they synthesize heme, assemble iron–...
AbstractIron–sulfur (Fe/S) clusters are important cofactors of numerous proteins involved in electro...
The importance of mitochondria in mammalian cells is widely known. Several biochemical reactions and...
Iron–sulfur (Fe/S) clusters (ISCs) are redox-active protein cofactors that their synthesis, transfer...
Mitochondria are indispensable for cell viability; however, major mitochondrial functions including ...
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...
ABSTRACT MOLECULAR DETAILS OF THE PROTEINS INVOLVED MITOCHONDRIAL IRON-SULFUR CLUSTER ASSEMBLY by YO...
Maturation of iron-sulphur (Fe/S) proteins involves complex biosynthetic machinery. In vivo synthesi...
Fe-S clusters, essential cofactors needed for the activity of many different enzymes, are assembled ...
AbstractProteins containing iron–sulfur (Fe–S) clusters arose early in evolution and are essential t...
AbstractFe/S clusters are co-factors of numerous proteins with important functions in metabolism, el...
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 (ISCs) are versatile, ancient co-factors of proteins that are involved i...
AbstractMitochondria play a key role in iron metabolism in that they synthesize heme, assemble iron–...
AbstractIron–sulfur (Fe/S) clusters are important cofactors of numerous proteins involved in electro...
The importance of mitochondria in mammalian cells is widely known. Several biochemical reactions and...
Iron–sulfur (Fe/S) clusters (ISCs) are redox-active protein cofactors that their synthesis, transfer...
Mitochondria are indispensable for cell viability; however, major mitochondrial functions including ...
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...
ABSTRACT MOLECULAR DETAILS OF THE PROTEINS INVOLVED MITOCHONDRIAL IRON-SULFUR CLUSTER ASSEMBLY by YO...
Maturation of iron-sulphur (Fe/S) proteins involves complex biosynthetic machinery. In vivo synthesi...
Fe-S clusters, essential cofactors needed for the activity of many different enzymes, are assembled ...
AbstractProteins containing iron–sulfur (Fe–S) clusters arose early in evolution and are essential t...
AbstractFe/S clusters are co-factors of numerous proteins with important functions in metabolism, el...
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...