The ferric iron uptake (Fiu) transporter from Escherichia coli functions in the transport of iron-catecholate complexes across the bacterial outer membrane, providing the bacterium with iron, which is essential for growth. Recently it has become clear that Fiu also represents a liability for E. coli because its activity allows import of antimicrobial compounds that mimic catecholate. This inadvertent import suggests the potential utility of antimicrobial catechol siderophore mimetics in managing bacterial infections. However, to fully exploit these compounds, a detailed understanding of the mechanism of transport through Fiu and related transporters is required. To address this question, we determined the crystal structure of Fiu at 2.1-2.9...
Contents: Ferric Siderophore Transport via Outer Membrane Receptors of Escherichia coli: Structural ...
Escherichia coli has an iron(II) transport system (feo) which may make an important contribution to ...
Bacteria secrete various iron-chelators (siderophores), which scavenge Fe3+ from the environment, bi...
Doctor of PhilosophyBiochemistry and Molecular Biophysics Interdepartmental ProgramPhillip E KlebbaU...
Doctor of PhilosophyBiochemistry and Molecular Biophysics Interdepartmental ProgramPhillip E KlebbaU...
Campylobacter jejuni and Escherichia coli strain F11 are two Gram-negative pathogens with a versatil...
In Escherichia coli, FhuA, together with the energy-transducing TonB-ExbB-ExbD complex, mediates the...
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...
AbstractBacteria solve the iron supply problem caused by the insolubility of Fe3+ by synthesizing ir...
Unlike their descendants, mitochondria and plastids, bacteria do not have dedicated protein import s...
Unlike their descendants, mitochondria and plastids, bacteria do not have dedicated protein import s...
Unlike their descendants, mitochondria and plastids, bacteria do not have dedicated protein import s...
Iron is an essential element for life, and its acquisition entails a challenge for pathogens as they...
Iron is an essential element for life, and its acquisition entails a challenge for pathogens as they...
Contents: Ferric Siderophore Transport via Outer Membrane Receptors of Escherichia coli: Structural ...
Escherichia coli has an iron(II) transport system (feo) which may make an important contribution to ...
Bacteria secrete various iron-chelators (siderophores), which scavenge Fe3+ from the environment, bi...
Doctor of PhilosophyBiochemistry and Molecular Biophysics Interdepartmental ProgramPhillip E KlebbaU...
Doctor of PhilosophyBiochemistry and Molecular Biophysics Interdepartmental ProgramPhillip E KlebbaU...
Campylobacter jejuni and Escherichia coli strain F11 are two Gram-negative pathogens with a versatil...
In Escherichia coli, FhuA, together with the energy-transducing TonB-ExbB-ExbD complex, mediates the...
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...
AbstractBacteria solve the iron supply problem caused by the insolubility of Fe3+ by synthesizing ir...
Unlike their descendants, mitochondria and plastids, bacteria do not have dedicated protein import s...
Unlike their descendants, mitochondria and plastids, bacteria do not have dedicated protein import s...
Unlike their descendants, mitochondria and plastids, bacteria do not have dedicated protein import s...
Iron is an essential element for life, and its acquisition entails a challenge for pathogens as they...
Iron is an essential element for life, and its acquisition entails a challenge for pathogens as they...
Contents: Ferric Siderophore Transport via Outer Membrane Receptors of Escherichia coli: Structural ...
Escherichia coli has an iron(II) transport system (feo) which may make an important contribution to ...
Bacteria secrete various iron-chelators (siderophores), which scavenge Fe3+ from the environment, bi...