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Author's Orientation of the axial ligands and magnetic properties of the hemes in the cytochrome c7 family from Geobacter sulfurreducens determined by paramagnetic NMR
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Author's Thermodynamic and kinetic characterization of two methyl-accepting chemotaxis heme sensors from Geobacter sulfurreducens reveals the structural origin of their functional difference
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Author's Unveiling the Structural Basis That Regulates the Energy Transduction Properties within a Family of Triheme Cytochromes from Geobacter sulfurreducens
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divingintotheredoxpropertiesofgeobactersulfurreducenscytochromesamodelforextracellularelectrontransfer
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Diving into the redox properties of Geobacter sulfurreducens cytochromes: a model for extracellular electron transfer.
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1
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orientationoftheaxialligandsandmagneticpropertiesofthehemesinthecytochromec7familyfromgeobactersulfurreducensdeterminedbyparamagneticnmr
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Orientation of the axial ligands and magnetic properties of the hemes in the cytochrome c7 family from Geobacter sulfurreducens determined by paramagnetic NMR
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1
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solutionstructureanddynamicsoftheoutermembranecytochromeomcffromgeobactersulfurreducens
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Solution structure and dynamics of the outer membrane cytochrome OmcF from Geobacter sulfurreducens
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1
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thermodynamicandkineticcharacterizationof2methylacceptingchemotaxishemesensorsfromgeobactersulfurreducensrevealsthestructuraloriginoftheirfunctionaldifference
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Thermodynamic and kinetic characterization of two methyl-accepting chemotaxis heme sensors from Geobacter sulfurreducens reveals the structural origin of their functional difference
‡9
1
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unveilingthestructuralbasisthatregulatestheenergytransductionpropertieswithinafamilyoftrihemecytochromesfromgeobactersulfurreducens
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Unveiling the Structural Basis That Regulates the Energy Transduction Properties within a Family of Triheme Cytochromes from Geobacter sulfurreducens
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1