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Cell biology / Protein domains / TonB-dependent receptors / Siderophore / Transmembrane protein / Enterobactin / Colicin / ATP-binding cassette transporter / Membrane protein / Biology / Microbiology / Membrane biology


Gram-Negative Bacterial Iron Acquisition Systems: Signal and Energy Transduction Drive Siderophore Uptake through the Cell Envelope Phillip E. Klebba, Ph. D. and Salete M. C. Newton, Ph. D. I. Signal and energy transduct
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Document Date: 2011-11-06 11:21:10


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City

Kaserer / /

Company

Gram-Negative Bacterial Iron Acquisition Systems / Curr Opin Microbiol / ABC / L. M. Massia L. C. / Z. / ASM Press / RCSB Protein Data Bank / /

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the porin / /

Facility

terminus of FepA / A. Hall / /

IndustryTerm

metal / metal transport / energy transduction / resonance energy transfer / cellular energy / unknown energy-dependent reactions / distinct systems / energy-dependent iron transport systems / multi-component metal internalization process / ligand-binding site / energy generation / Bacterial iron uptake systems / sulfhydryl side chain / metal transport systems / metal complexes / metal ions / bound metal complex / iron transport systems / transport systems / energy / high affinity metal uptake / /

Person

J. B. Feix / S. K. Armstrong / C. K. Murphy / P. Warfel / J. Liu / B. Jin / C. Sprencel / D. C. Scott / J. D. Igo / S. B. Foster / M. Bauler / M. C. Newton / Z. Cao / M. A. McIntosh / S. M. Newton / P. E. Klebba / J. A. Lyons / J. S. Allen / Matthew Bauler / J. M. Rutz / Daniel C. Scott / M. A. Payne / J. Goranson / /

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Position

Cao / /

Technology

thermodynamics / DNA synthesis / spectroscopy / /

URL

http /

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