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Structure of a bacterial cell surface decaheme electron conduit
by
Edwards, Marcus J
, Beliaev, Alexander S
, Gates, Andrew J
, Fredrickson, James K
, Watmough, Nicholas J
, Clarke, Thomas A
, Bradley, Justin
, Marshall, Matthew J
, Wang, Zheming
, Zachara, John M
, White, Gaye F
, Shi, Liang
, Richardson, David J
, Hall, Andrea
, Reardon, Catherine L
, Butt, Julea N
in
Amino Acid Sequence
/ appendages
/ Bacteria
/ Bacterial Outer Membrane Proteins - chemistry
/ Bacterial Outer Membrane Proteins - genetics
/ Bacterial Outer Membrane Proteins - metabolism
/ Bacterial proteins
/ Binding Sites - genetics
/ Biochemistry
/ Biological Sciences
/ Cell surface
/ Crystal structure
/ Crystallography, X-Ray
/ Cysteine - chemistry
/ Cysteine - genetics
/ Cysteine - metabolism
/ Cytochrome c Group - chemistry
/ Cytochrome c Group - genetics
/ Cytochrome c Group - metabolism
/ Cytochromes
/ Cytochromes - chemistry
/ Cytochromes - genetics
/ Cytochromes - metabolism
/ Disulfides - chemistry
/ Electrodes
/ Electron Spin Resonance Spectroscopy
/ Electron transfer
/ Electron Transport
/ Electron transport chain
/ Electronic structure
/ Electrons
/ flavin
/ Flavin Mononucleotide - chemistry
/ Flavin Mononucleotide - metabolism
/ Flavin Mononucleotide - pharmacology
/ flavins
/ Gram-negative bacteria
/ Heme - chemistry
/ Heme - metabolism
/ Iron
/ Iron - chemistry
/ Iron - metabolism
/ Iron - pharmacology
/ Ligands
/ Manganese
/ Membranes
/ Minerals
/ Models, Molecular
/ Molecular Sequence Data
/ nanotechnology
/ nanowires
/ Oxidation-Reduction - drug effects
/ Potentiometry
/ Protein Binding
/ Protein Structure, Tertiary
/ Shewanella
/ Shewanella - genetics
/ Shewanella - metabolism
/ Shewanella oneidensis
/ Solvents
2011
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Structure of a bacterial cell surface decaheme electron conduit
by
Edwards, Marcus J
, Beliaev, Alexander S
, Gates, Andrew J
, Fredrickson, James K
, Watmough, Nicholas J
, Clarke, Thomas A
, Bradley, Justin
, Marshall, Matthew J
, Wang, Zheming
, Zachara, John M
, White, Gaye F
, Shi, Liang
, Richardson, David J
, Hall, Andrea
, Reardon, Catherine L
, Butt, Julea N
in
Amino Acid Sequence
/ appendages
/ Bacteria
/ Bacterial Outer Membrane Proteins - chemistry
/ Bacterial Outer Membrane Proteins - genetics
/ Bacterial Outer Membrane Proteins - metabolism
/ Bacterial proteins
/ Binding Sites - genetics
/ Biochemistry
/ Biological Sciences
/ Cell surface
/ Crystal structure
/ Crystallography, X-Ray
/ Cysteine - chemistry
/ Cysteine - genetics
/ Cysteine - metabolism
/ Cytochrome c Group - chemistry
/ Cytochrome c Group - genetics
/ Cytochrome c Group - metabolism
/ Cytochromes
/ Cytochromes - chemistry
/ Cytochromes - genetics
/ Cytochromes - metabolism
/ Disulfides - chemistry
/ Electrodes
/ Electron Spin Resonance Spectroscopy
/ Electron transfer
/ Electron Transport
/ Electron transport chain
/ Electronic structure
/ Electrons
/ flavin
/ Flavin Mononucleotide - chemistry
/ Flavin Mononucleotide - metabolism
/ Flavin Mononucleotide - pharmacology
/ flavins
/ Gram-negative bacteria
/ Heme - chemistry
/ Heme - metabolism
/ Iron
/ Iron - chemistry
/ Iron - metabolism
/ Iron - pharmacology
/ Ligands
/ Manganese
/ Membranes
/ Minerals
/ Models, Molecular
/ Molecular Sequence Data
/ nanotechnology
/ nanowires
/ Oxidation-Reduction - drug effects
/ Potentiometry
/ Protein Binding
/ Protein Structure, Tertiary
/ Shewanella
/ Shewanella - genetics
/ Shewanella - metabolism
/ Shewanella oneidensis
/ Solvents
2011
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Structure of a bacterial cell surface decaheme electron conduit
by
Edwards, Marcus J
, Beliaev, Alexander S
, Gates, Andrew J
, Fredrickson, James K
, Watmough, Nicholas J
, Clarke, Thomas A
, Bradley, Justin
, Marshall, Matthew J
, Wang, Zheming
, Zachara, John M
, White, Gaye F
, Shi, Liang
, Richardson, David J
, Hall, Andrea
, Reardon, Catherine L
, Butt, Julea N
in
Amino Acid Sequence
/ appendages
/ Bacteria
/ Bacterial Outer Membrane Proteins - chemistry
/ Bacterial Outer Membrane Proteins - genetics
/ Bacterial Outer Membrane Proteins - metabolism
/ Bacterial proteins
/ Binding Sites - genetics
/ Biochemistry
/ Biological Sciences
/ Cell surface
/ Crystal structure
/ Crystallography, X-Ray
/ Cysteine - chemistry
/ Cysteine - genetics
/ Cysteine - metabolism
/ Cytochrome c Group - chemistry
/ Cytochrome c Group - genetics
/ Cytochrome c Group - metabolism
/ Cytochromes
/ Cytochromes - chemistry
/ Cytochromes - genetics
/ Cytochromes - metabolism
/ Disulfides - chemistry
/ Electrodes
/ Electron Spin Resonance Spectroscopy
/ Electron transfer
/ Electron Transport
/ Electron transport chain
/ Electronic structure
/ Electrons
/ flavin
/ Flavin Mononucleotide - chemistry
/ Flavin Mononucleotide - metabolism
/ Flavin Mononucleotide - pharmacology
/ flavins
/ Gram-negative bacteria
/ Heme - chemistry
/ Heme - metabolism
/ Iron
/ Iron - chemistry
/ Iron - metabolism
/ Iron - pharmacology
/ Ligands
/ Manganese
/ Membranes
/ Minerals
/ Models, Molecular
/ Molecular Sequence Data
/ nanotechnology
/ nanowires
/ Oxidation-Reduction - drug effects
/ Potentiometry
/ Protein Binding
/ Protein Structure, Tertiary
/ Shewanella
/ Shewanella - genetics
/ Shewanella - metabolism
/ Shewanella oneidensis
/ Solvents
2011
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Structure of a bacterial cell surface decaheme electron conduit
Journal Article
Structure of a bacterial cell surface decaheme electron conduit
2011
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Overview
Some bacterial species are able to utilize extracellular mineral forms of iron and manganese as respiratory electron acceptors. In Shewanella oneidensis this involves decaheme cytochromes that are located on the bacterial cell surface at the termini of trans-outer-membrane electron transfer conduits. The cell surface cytochromes can potentially play multiple roles in mediating electron transfer directly to insoluble electron sinks, catalyzing electron exchange with flavin electron shuttles or participating in extracellular intercytochrome electron exchange along \"nanowire\" appendages. We present a 3.2-Ã
crystal structure of one of these decaheme cytochromes, MtrF, that allows the spatial organization of the 10 hemes to be visualized for the first time. The hemes are organized across four domains in a unique crossed conformation, in which a staggered 65-Ã
octaheme chain transects the length of the protein and is bisected by a planar 45-Ã
tetraheme chain that connects two extended Greek key split β-barrel domains. The structure provides molecular insight into how reduction of insoluble substrate (e.g., minerals), soluble substrates (e.g., flavins), and cytochrome redox partners might be possible in tandem at different termini of a trifurcated electron transport chain on the cell surface.
Publisher
National Academy of Sciences,National Acad Sciences
Subject
/ Bacteria
/ Bacterial Outer Membrane Proteins - chemistry
/ Bacterial Outer Membrane Proteins - genetics
/ Bacterial Outer Membrane Proteins - metabolism
/ Cytochrome c Group - chemistry
/ Cytochrome c Group - genetics
/ Cytochrome c Group - metabolism
/ Electron Spin Resonance Spectroscopy
/ flavin
/ Flavin Mononucleotide - chemistry
/ Flavin Mononucleotide - metabolism
/ Flavin Mononucleotide - pharmacology
/ flavins
/ Iron
/ Ligands
/ Minerals
/ Oxidation-Reduction - drug effects
/ Solvents
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