In the Suf Fe–S cluster assembly pathway, the activity of the cysteine desulfurase, SufS, is regulated by interactions with the accessory sulfotransferase protein, SufE. SufE has been shown to stimulate SufS activity, likely by inducing conformational changes in the SufS active site that promote the desulfurase step and by acting as an efficient persulfide acceptor in the transpersulfuration step. Previous results point toward an additional level of regulation through a “half-sites” mechanism that affects the stoichiometry and affinity for SufE as the dimeric SufS shifts between desulfurase and transpersulfuration activities. Investigation of the covalent persulfide intermediate of SufS by backbone amide hydrogen–deuterium exchange mass spe...
The Escherichia coli periplasm contains several proteins from the thioredoxin family. DsbA and Dsbc ...
Fe-S clusters are one major type of the sulfur-containing cofactors, which conduct essential functio...
The regulation of transition metals within living organisms is essential to the persistence of life....
SufS is a type II cysteine desulfurase and acts as the initial step in the Suf Fe–S cluster assembly...
AbstractSufS is a cysteine desulfurase of the suf operon shown to be involved in iron–sulfur cluster...
Many essential metalloproteins require iron–sulfur (Fe–S) cluster cofactors for their function. In v...
AbstractSufS is a cysteine desulfurase of the suf operon shown to be involved in iron–sulfur cluster...
Iron homeostasis is crucial to overall cellular health. To keep iron levels in the cell stable, orga...
AbstractIron–sulfur cluster biosynthesis in Gram-positive bacteria is mediated by the SUF system. Th...
AbstractIron–sulfur cluster biosynthesis in Gram-positive bacteria is mediated by the SUF system. Th...
CsdA cysteine desulfurase (the sulfur donor) and the CsdE sulfur acceptor are involved in biological...
Fe-S clusters are critical metallocofactors required for cell function. Because of the toxicity of f...
Iron-sulfur (Fe-S) clusters are ancient cofactors that participate in numerous cellular processes, s...
Fe-S clusters are critical metallocofactors required for cell function. Because of the toxicity of f...
The first step in sulfur mobilization for the biosynthesis of Fe–S clusters under oxidative stress a...
The Escherichia coli periplasm contains several proteins from the thioredoxin family. DsbA and Dsbc ...
Fe-S clusters are one major type of the sulfur-containing cofactors, which conduct essential functio...
The regulation of transition metals within living organisms is essential to the persistence of life....
SufS is a type II cysteine desulfurase and acts as the initial step in the Suf Fe–S cluster assembly...
AbstractSufS is a cysteine desulfurase of the suf operon shown to be involved in iron–sulfur cluster...
Many essential metalloproteins require iron–sulfur (Fe–S) cluster cofactors for their function. In v...
AbstractSufS is a cysteine desulfurase of the suf operon shown to be involved in iron–sulfur cluster...
Iron homeostasis is crucial to overall cellular health. To keep iron levels in the cell stable, orga...
AbstractIron–sulfur cluster biosynthesis in Gram-positive bacteria is mediated by the SUF system. Th...
AbstractIron–sulfur cluster biosynthesis in Gram-positive bacteria is mediated by the SUF system. Th...
CsdA cysteine desulfurase (the sulfur donor) and the CsdE sulfur acceptor are involved in biological...
Fe-S clusters are critical metallocofactors required for cell function. Because of the toxicity of f...
Iron-sulfur (Fe-S) clusters are ancient cofactors that participate in numerous cellular processes, s...
Fe-S clusters are critical metallocofactors required for cell function. Because of the toxicity of f...
The first step in sulfur mobilization for the biosynthesis of Fe–S clusters under oxidative stress a...
The Escherichia coli periplasm contains several proteins from the thioredoxin family. DsbA and Dsbc ...
Fe-S clusters are one major type of the sulfur-containing cofactors, which conduct essential functio...
The regulation of transition metals within living organisms is essential to the persistence of life....