Periplasmic c-type cytochromes are essential for the electron transport between the cytoplasmic membrane bound menquinol oxidase CymA and the terminal ferric iron reductase MtrABC in the outer membrane of Shewanella oneidensis cells. Either STC or FccA are necessary for periplasmic electron transfer. We followed the hypothesis that the elimination of potential competing reactions in the periplasm and the simultaneous overexpression of STC (cctA)could lead to an accelerated electron transfer to the cell surface. The genes nrfA, ccpA, napB and napA were replaced by cctA. This led to a 1.7-fold increased ferric iron reduction rate and a 23% higher current generation in a bioelectrochemical system. Moreover, the quadruple mutant had a higher pe...
<p>Shewanella oneidensis produces an extensive electron transfer network that results in metabolic f...
Extracellular electron transfer pathways allow bacteria to transfer electrons from the cell metaboli...
The ability of the metal reducer Shewanella oneidensis MR-1 to generate electricity in microbial fue...
The low efficiency of extracellular electron transfer (EET) is a major bottleneck for Shewanella one...
Bioelectrochemical systems rely on microorganisms to link complex oxidation/reduction reactions to e...
The gammaproteobacterium Shewanella oneidensis MR-1 utilizes a complex electron transfer network com...
Shewanella oneidensis strain MR-1 is a facultative anaerobic bacterium capable of respiring a multit...
<p>Shewanella oneidensis produces an extensive electron transfer network that results in metabolic f...
<p>Shewanella oneidensis produces an extensive electron transfer network that results in metabolic f...
Data for figures for "Identification of a Pathway for Electron Uptake in Shewanella oneidensis" Abs...
Although members of the genus Shewanella have common features (e.g., the presence of decaheme c-type...
<p>Shewanella oneidensis produces an extensive electron transfer network that results in metabolic f...
<p>Shewanella oneidensis produces an extensive electron transfer network that results in metabolic f...
The Mtr respiratory pathway of Shewanella oneidensis strain MR-1 is required to effectively respire ...
Flavins regulate the rate and direction of extracellular electron transfer (EET) in <i>Shewanella on...
<p>Shewanella oneidensis produces an extensive electron transfer network that results in metabolic f...
Extracellular electron transfer pathways allow bacteria to transfer electrons from the cell metaboli...
The ability of the metal reducer Shewanella oneidensis MR-1 to generate electricity in microbial fue...
The low efficiency of extracellular electron transfer (EET) is a major bottleneck for Shewanella one...
Bioelectrochemical systems rely on microorganisms to link complex oxidation/reduction reactions to e...
The gammaproteobacterium Shewanella oneidensis MR-1 utilizes a complex electron transfer network com...
Shewanella oneidensis strain MR-1 is a facultative anaerobic bacterium capable of respiring a multit...
<p>Shewanella oneidensis produces an extensive electron transfer network that results in metabolic f...
<p>Shewanella oneidensis produces an extensive electron transfer network that results in metabolic f...
Data for figures for "Identification of a Pathway for Electron Uptake in Shewanella oneidensis" Abs...
Although members of the genus Shewanella have common features (e.g., the presence of decaheme c-type...
<p>Shewanella oneidensis produces an extensive electron transfer network that results in metabolic f...
<p>Shewanella oneidensis produces an extensive electron transfer network that results in metabolic f...
The Mtr respiratory pathway of Shewanella oneidensis strain MR-1 is required to effectively respire ...
Flavins regulate the rate and direction of extracellular electron transfer (EET) in <i>Shewanella on...
<p>Shewanella oneidensis produces an extensive electron transfer network that results in metabolic f...
Extracellular electron transfer pathways allow bacteria to transfer electrons from the cell metaboli...
The ability of the metal reducer Shewanella oneidensis MR-1 to generate electricity in microbial fue...