AbstractFhuA is one of the more complex members of the superfamily of bacterial outer membrane proteins. Its primary function is to provide a binding site on the outer membrane surface for siderophores, such as ferrichrome, and subsequently to facilitate their energy-dependent transport across the membrane, presumably powered by the TonB-ExbBD protein complex that resides in the cytoplasmic membrane. Crystal structures of FhuA with and without a bound ferrichrome molecule have provided some clues as to the initial stages of the siderophore transport mechanism. In the current study, we have employed 10-ns duration molecular dynamics simulations of FhuA and of the FhuA-ferrichrome complex, both embedded in a phospholipid bilayer, to probe the...
Since Waring & Werkman documented a microbial requirement for iron in 1944, much progress has been m...
Iron is an essential nutrient for all microorganisms with a few exceptions. Microorganisms use a var...
Doctor of PhilosophyBiochemistry and Molecular Biophysics Interdepartmental ProgramPhillip E. Klebba...
FhuA is one of the more complex members of the superfamily of bacterial outer membrane proteins. Its...
AbstractActive transport of Fe3+ as ferrichrome complex through the outer membrane of Escherichia co...
AbstractCrystal structures have been solved for two bacterial outer membrane proteins, FhuA and FepA...
For uptake of ferrichrome into bacterial cells, FhuA, a TonB-dependent outer membrane receptor of Es...
AbstractThe TonB-dependent transporters mediate high-affinity binding and active transport of a vari...
AbstractFhuA protein facilitates ligand-gated transport of ferrichrome-bound iron across Escherichia...
Iron is an essential element required by most organisms. To acquire iron, Gram-negative bacteria ut...
AbstractBackground: FhuA, an integral membrane protein of Escherichia coli, actively transports ferr...
In Escherichia coli, FhuA, together with the energy-transducing TonB-ExbB-ExbD complex, mediates the...
The ferric hydroxymate uptake (FhuA) receptor from Escherichia coli facilitates transport of siderop...
FhuA, the receptor for ferrichrome-iron in Escherichia coli, is a member of a family of integral out...
The hydroxamate siderophore receptor FhuA is a TonB-dependent outer membrane protein of Escherichia ...
Since Waring & Werkman documented a microbial requirement for iron in 1944, much progress has been m...
Iron is an essential nutrient for all microorganisms with a few exceptions. Microorganisms use a var...
Doctor of PhilosophyBiochemistry and Molecular Biophysics Interdepartmental ProgramPhillip E. Klebba...
FhuA is one of the more complex members of the superfamily of bacterial outer membrane proteins. Its...
AbstractActive transport of Fe3+ as ferrichrome complex through the outer membrane of Escherichia co...
AbstractCrystal structures have been solved for two bacterial outer membrane proteins, FhuA and FepA...
For uptake of ferrichrome into bacterial cells, FhuA, a TonB-dependent outer membrane receptor of Es...
AbstractThe TonB-dependent transporters mediate high-affinity binding and active transport of a vari...
AbstractFhuA protein facilitates ligand-gated transport of ferrichrome-bound iron across Escherichia...
Iron is an essential element required by most organisms. To acquire iron, Gram-negative bacteria ut...
AbstractBackground: FhuA, an integral membrane protein of Escherichia coli, actively transports ferr...
In Escherichia coli, FhuA, together with the energy-transducing TonB-ExbB-ExbD complex, mediates the...
The ferric hydroxymate uptake (FhuA) receptor from Escherichia coli facilitates transport of siderop...
FhuA, the receptor for ferrichrome-iron in Escherichia coli, is a member of a family of integral out...
The hydroxamate siderophore receptor FhuA is a TonB-dependent outer membrane protein of Escherichia ...
Since Waring & Werkman documented a microbial requirement for iron in 1944, much progress has been m...
Iron is an essential nutrient for all microorganisms with a few exceptions. Microorganisms use a var...
Doctor of PhilosophyBiochemistry and Molecular Biophysics Interdepartmental ProgramPhillip E. Klebba...