AbstractThe metal-reducing bacterium Shewanella putrefaciens MR-1 is known to localize a majority of its membrane-bound cytochromes to its outer membrane when grown under anaerobic conditions. In this study, pyridine hemochrome spectra confirmed that these outer membrane cytochromes are c-type, and electrophoretic data demonstrated the presence of four distinct outer membrane cytochromes, with apparent molecular masses of 150, 83, 65, and 53 kDa. Fourth-order derivative analysis of 77 K spectra of the outer membrane revealed four spectrally distinct c-type hemes, with peaks at 545.4, 548.0, 550.6, and 552.6 nm. Outer membrane cytochromes in the reduced state were rapidly re-oxidized by oxidized iron and manganese, which have previously been...
Shewanella are renowned for their ability to utilize a wide range of electron acceptors (EA) for res...
Many species of the bacterial Shewanella genus are notable for their ability to respire in anoxic en...
The c-type cytochrome (OmcB) and the multicopper protein (OmpB) required for Fe(III) oxide reduction...
AbstractThe metal-reducing bacterium Shewanella putrefaciens MR-1 is known to localize a majority of...
Two membranous c-type cytochromes from the Fe(III)-respiring bacterium Shewanella frigidimarina NCIM...
We have functionally produced the outer membrane cytochrome OmcA from Shewanella oneidensis in Esche...
The potential role of outer membrane proteins in electron transfer to insoluble Fe(III) oxides by Ge...
AbstractThe sequence of the omcA gene, which encodes a decaheme cytochrome c that is localized to th...
In the absence of O2 and other electron acceptors, the Gram-negative bacterium Shewanella oneidensis...
Shewanella oneidensis strain MR-1 is a facultative anaerobic bacterium capable of respiring a multit...
Geobacter sulfurreducens is capable of anaerobic respiration with Fe(III) as a terminal electron acc...
The iron-reducing bacterium Shewanella oneidensis MR-1 has the capacity to contribute to iron cyclin...
Many species of bacteria can generate energy in the anoxic subsurface by directly coupling intracell...
Many species of bacteria can generate energy in the anoxic subsurface by directly coupling intracell...
Heliobacillus mobilis is a strictly anaerobic Gram-positive bacterium which contains a primitive Pho...
Shewanella are renowned for their ability to utilize a wide range of electron acceptors (EA) for res...
Many species of the bacterial Shewanella genus are notable for their ability to respire in anoxic en...
The c-type cytochrome (OmcB) and the multicopper protein (OmpB) required for Fe(III) oxide reduction...
AbstractThe metal-reducing bacterium Shewanella putrefaciens MR-1 is known to localize a majority of...
Two membranous c-type cytochromes from the Fe(III)-respiring bacterium Shewanella frigidimarina NCIM...
We have functionally produced the outer membrane cytochrome OmcA from Shewanella oneidensis in Esche...
The potential role of outer membrane proteins in electron transfer to insoluble Fe(III) oxides by Ge...
AbstractThe sequence of the omcA gene, which encodes a decaheme cytochrome c that is localized to th...
In the absence of O2 and other electron acceptors, the Gram-negative bacterium Shewanella oneidensis...
Shewanella oneidensis strain MR-1 is a facultative anaerobic bacterium capable of respiring a multit...
Geobacter sulfurreducens is capable of anaerobic respiration with Fe(III) as a terminal electron acc...
The iron-reducing bacterium Shewanella oneidensis MR-1 has the capacity to contribute to iron cyclin...
Many species of bacteria can generate energy in the anoxic subsurface by directly coupling intracell...
Many species of bacteria can generate energy in the anoxic subsurface by directly coupling intracell...
Heliobacillus mobilis is a strictly anaerobic Gram-positive bacterium which contains a primitive Pho...
Shewanella are renowned for their ability to utilize a wide range of electron acceptors (EA) for res...
Many species of the bacterial Shewanella genus are notable for their ability to respire in anoxic en...
The c-type cytochrome (OmcB) and the multicopper protein (OmpB) required for Fe(III) oxide reduction...