NADPH is an intermediate in the oxidation of organic compounds coupled to Fe(III) reduction in Geobacter species, but Fe(III) reduction with NADPH as the electron donor has not been studied in these organisms. Crude extracts of Geobacter sulfurreducens catalyzed the NADPH-dependent reduction of Fe(III)-nitrilotriacetic acid (NTA). The responsible enzyme, which was recovered in the soluble protein fraction, was purified to apparent homogeneity in a four-step procedure. Its specific activity for Fe(III) reduction was 65 micromol. min(-1). mg(-1). The soluble Fe(III) reductase was specific for NADPH and did not utilize NADH as an electron donor. Although the enzyme reduced several forms of Fe(III), Fe(III)-NTA was the preferred electron accept...
Background: Studies performed within the last decade have indicated that microbial reduction of Fe(I...
Mechanisms for Fe(III) oxide reduction were investigated in Geothrix fermentans, a dissimilatory Fe(...
Desulfotomaculum reducens strain MI-1 is a Gram-positive, sulfate-reducing bacterium also capable of...
A soluble ferric reductase, SfrAB, which catalysed the NADPH-dependent reduction of chelated Fe(III)...
Biological Fe(III) reduction is an environmentally significant process, but the mechanisms of electr...
The potential role of outer membrane proteins in electron transfer to insoluble Fe(III) oxides by Ge...
Reduction of Fe(III) in the subsurface environment is of immense environmental significance due to i...
Geobacter sulfurreducens is capable of anaerobic respiration with Fe(III) as a terminal electron acc...
Studies with the dissimilatory Fe(III)-reducing microorganism Geobacter metallireducens demonstrated...
Dissimilatory microbial iron(III)-reduction has been proposed as an important chemical change that t...
Previous studies demonstrated that an outer membrane c-type cytochrome, OmcB, was involved in Fe(III...
Outer membrane cytochromes OmcB and OmcS of Geobacter sulfurreducens are two important components of...
The mechanism of fumarate reduction in Geobacter sulfurreducens was investigated. The genome contain...
The reductive dissolution of poorly crystalline ferric oxides in the presence of cysteine was invest...
Studies with the dissimilatory Fe(III)-reducing microorganism Geobacter metallireducens demonstrated...
Background: Studies performed within the last decade have indicated that microbial reduction of Fe(I...
Mechanisms for Fe(III) oxide reduction were investigated in Geothrix fermentans, a dissimilatory Fe(...
Desulfotomaculum reducens strain MI-1 is a Gram-positive, sulfate-reducing bacterium also capable of...
A soluble ferric reductase, SfrAB, which catalysed the NADPH-dependent reduction of chelated Fe(III)...
Biological Fe(III) reduction is an environmentally significant process, but the mechanisms of electr...
The potential role of outer membrane proteins in electron transfer to insoluble Fe(III) oxides by Ge...
Reduction of Fe(III) in the subsurface environment is of immense environmental significance due to i...
Geobacter sulfurreducens is capable of anaerobic respiration with Fe(III) as a terminal electron acc...
Studies with the dissimilatory Fe(III)-reducing microorganism Geobacter metallireducens demonstrated...
Dissimilatory microbial iron(III)-reduction has been proposed as an important chemical change that t...
Previous studies demonstrated that an outer membrane c-type cytochrome, OmcB, was involved in Fe(III...
Outer membrane cytochromes OmcB and OmcS of Geobacter sulfurreducens are two important components of...
The mechanism of fumarate reduction in Geobacter sulfurreducens was investigated. The genome contain...
The reductive dissolution of poorly crystalline ferric oxides in the presence of cysteine was invest...
Studies with the dissimilatory Fe(III)-reducing microorganism Geobacter metallireducens demonstrated...
Background: Studies performed within the last decade have indicated that microbial reduction of Fe(I...
Mechanisms for Fe(III) oxide reduction were investigated in Geothrix fermentans, a dissimilatory Fe(...
Desulfotomaculum reducens strain MI-1 is a Gram-positive, sulfate-reducing bacterium also capable of...