YqjH is a cytoplasmic FAD-containing protein from Escherichia coli; based on homology to ViuB of Vibrio cholerae, it potentially acts as a ferri-siderophore reductase. This work describes its overexpression, purification, crystallization and structure solution at 3.0 A resolution. YqjH shares high sequence similarity with a number of known siderophore-interacting proteins and its structure was solved by molecular replacement using the siderophore-interacting protein from Shewanella putrefaciens as the search model. The YqjH structure resembles those of other members of the NAD(P)H:flavin oxidoreductase superfamily
Siderophores are small, high-affinity ferric iron chelators released by many microorganisms and some...
FhuA (M, 78,992, 714 amino acids), siderophore receptor for ferrichrome-iron in the outer membrane o...
Abstract The x-ray structure of ferric unliganded lipid-free Escherichia coli flavohemoglobin has be...
Iron is vital for life, so bacteria (including Escherichia coli) need to acquire it from their surro...
International audienceIron is a fundamental element for virtually all forms of life. Despite its abu...
Bacterial pathogens acquire the iron they need for survival and growth in a host by using siderophor...
Many pathogenic bacteria including Staphylococcus aureus use iron-chelating siderophores to acquire...
Many pathogenic bacteria including Staphylococcus aureus use iron-chelating siderophores to acquire...
Microbial iron acquisition is a complex process and frequently a key and necessary step for survival...
The level of bioavailable ferric iron (10-24 M Fe3+) in human serum is limited by its low solubil...
The infections from bacterial pathogen Pseudomonas aerugionsa are very difficult to cure and cause p...
The infections from bacterial pathogen Pseudomonas aerugionsa are very difficult to cure and cause p...
FhuA, the receptor for ferrichrome-iron in Escherichia coli, is a member of a family of integral out...
FhuA, the receptor for ferrichrome-iron in Escherichia coli, is a member of a family of integral out...
Iron is an essential element for all organisms, and microorganisms produce small molecule iron-chela...
Siderophores are small, high-affinity ferric iron chelators released by many microorganisms and some...
FhuA (M, 78,992, 714 amino acids), siderophore receptor for ferrichrome-iron in the outer membrane o...
Abstract The x-ray structure of ferric unliganded lipid-free Escherichia coli flavohemoglobin has be...
Iron is vital for life, so bacteria (including Escherichia coli) need to acquire it from their surro...
International audienceIron is a fundamental element for virtually all forms of life. Despite its abu...
Bacterial pathogens acquire the iron they need for survival and growth in a host by using siderophor...
Many pathogenic bacteria including Staphylococcus aureus use iron-chelating siderophores to acquire...
Many pathogenic bacteria including Staphylococcus aureus use iron-chelating siderophores to acquire...
Microbial iron acquisition is a complex process and frequently a key and necessary step for survival...
The level of bioavailable ferric iron (10-24 M Fe3+) in human serum is limited by its low solubil...
The infections from bacterial pathogen Pseudomonas aerugionsa are very difficult to cure and cause p...
The infections from bacterial pathogen Pseudomonas aerugionsa are very difficult to cure and cause p...
FhuA, the receptor for ferrichrome-iron in Escherichia coli, is a member of a family of integral out...
FhuA, the receptor for ferrichrome-iron in Escherichia coli, is a member of a family of integral out...
Iron is an essential element for all organisms, and microorganisms produce small molecule iron-chela...
Siderophores are small, high-affinity ferric iron chelators released by many microorganisms and some...
FhuA (M, 78,992, 714 amino acids), siderophore receptor for ferrichrome-iron in the outer membrane o...
Abstract The x-ray structure of ferric unliganded lipid-free Escherichia coli flavohemoglobin has be...