Because of their cell surface locations, the outer membrane c-type cytochromes MtrC and OmcA of Shewanella oneidensis MR-1 have been suggested to be the terminal reductases for a range of redox-reactive metals that form poorly soluble solids or that do not readily cross the outer membrane. In this work, we determined the kinetics of reduction of a series of Fe(III) complexes with citrate, nitrilotriacetic acid (NTA), and EDTA by MtrC and OmcA using a stopped-flow technique in combination with theoretical computation methods. Stopped-flow kinetic data showed that the reaction proceeded in two stages, a fast stage that was completed in less than 1 s, followed by a second, relatively slower stage. For a given complex, electron transfer by MtrC...
In many soils, sediments and groundwaters, ferric iron is a major potential electron acceptor for th...
The ability of S. putrefaciens to reduce Fe(III) complexed by a variety of ligands has been investig...
The reductive dissolution of hematite (α-Fe2O3) was investigated in a flow-through system using AH2D...
The reduction kinetics of Fe(III)citrate, Fe(III)NTA, Co(III)EDTA−, U(VI)O22+, Cr(VI)O42−, and Tc(VI...
The susceptibility to dissimilatory reduction of polynuclear oxo- and hydroxo-bridged Fe(m) complexe...
In an effort to improve the understanding of electron transfer mechanisms at the microbe–mineral int...
The reaction of c-cytochromes with iron hexacyanides is similar in mechanism to the interaction of c...
The kinetics and mechanism of reductive dissolution of Fe(III) oxides were examined in pure, batch c...
In the absence of O2 and other electron acceptors, the Gram-negative bacterium Shewanella oneidensis...
Communication in Physical Sciences 2018, 3(1): 49-60 Pius Onyeoziri Ukoha, Kenneth OkekeUgwuanyi an...
The cycling of iron at the Earth's near surface is profoundly influenced by dissimilatory metal...
Under anaerobic conditions, Shewanella putrefaciens is capable of respiratory-chain-linked, high-rat...
Transition metal ions in their free state bring unwanted biological oxidations generating oxidative ...
In many soils, sediments and groundwaters, ferric iron is a major potential electron acceptor for th...
In many soils, sediments and groundwaters, ferric iron is a major potential electron acceptor for th...
In many soils, sediments and groundwaters, ferric iron is a major potential electron acceptor for th...
The ability of S. putrefaciens to reduce Fe(III) complexed by a variety of ligands has been investig...
The reductive dissolution of hematite (α-Fe2O3) was investigated in a flow-through system using AH2D...
The reduction kinetics of Fe(III)citrate, Fe(III)NTA, Co(III)EDTA−, U(VI)O22+, Cr(VI)O42−, and Tc(VI...
The susceptibility to dissimilatory reduction of polynuclear oxo- and hydroxo-bridged Fe(m) complexe...
In an effort to improve the understanding of electron transfer mechanisms at the microbe–mineral int...
The reaction of c-cytochromes with iron hexacyanides is similar in mechanism to the interaction of c...
The kinetics and mechanism of reductive dissolution of Fe(III) oxides were examined in pure, batch c...
In the absence of O2 and other electron acceptors, the Gram-negative bacterium Shewanella oneidensis...
Communication in Physical Sciences 2018, 3(1): 49-60 Pius Onyeoziri Ukoha, Kenneth OkekeUgwuanyi an...
The cycling of iron at the Earth's near surface is profoundly influenced by dissimilatory metal...
Under anaerobic conditions, Shewanella putrefaciens is capable of respiratory-chain-linked, high-rat...
Transition metal ions in their free state bring unwanted biological oxidations generating oxidative ...
In many soils, sediments and groundwaters, ferric iron is a major potential electron acceptor for th...
In many soils, sediments and groundwaters, ferric iron is a major potential electron acceptor for th...
In many soils, sediments and groundwaters, ferric iron is a major potential electron acceptor for th...
The ability of S. putrefaciens to reduce Fe(III) complexed by a variety of ligands has been investig...
The reductive dissolution of hematite (α-Fe2O3) was investigated in a flow-through system using AH2D...