AbstractThe respiration of metals by the bacterium Geobacter sulfurreducens requires electrons generated by metabolism to pass from the interior of the cell to electron acceptors beyond the cell membranes. The G. sulfurreducens inner membrane multiheme c-type cytochrome ImcH is required for respiration to extracellular electron acceptors with redox potentials greater than −0.1V vs. SHE, but ImcH is not essential for electron transfer to lower potential acceptors. In contrast, deletion of cbcL, encoding an inner membrane protein consisting of b-type and multiheme c-type cytochrome domains, severely affected reduction of low potential electron acceptors such as Fe(III)-oxides and electrodes poised at −0.1V vs. SHE. Catalytic cyclic voltammetr...
Background Metal reduction is thought to take place at or near the bacterial outer membrane and, thu...
The delta-proteobacterium, Geobacter sulfurreducens, can obtain energy by coupling the oxidation of ...
The delta-proteobacterium, Geobacter sulfurreducens, can obtain energy by coupling the oxidation of ...
AbstractThe respiration of metals by the bacterium Geobacter sulfurreducens requires electrons gener...
ABSTRACT Dissimilatory metal-reducing bacteria, such as Geobacter sulfurreducens, transfer electrons...
The data files include raw data as well as analyzed results for transcriptional analysis of WT G. su...
Previous studies demonstrated that an outer membrane c-type cytochrome, OmcB, was involved in Fe(III...
The potential role of outer membrane proteins in electron transfer to insoluble Fe(III) oxides by Ge...
Geobacteracea are distinct for their ability to reduce insoluble oxidants including minerals and ele...
Electroactive bacteria combine the oxidation of carbon substrates with an extracellular electron tra...
Geobacter bacteria have awakened significantly attention because of their impact on natural environm...
University of Minnesota Ph.D. dissertation. May 2018. Major: Biochemistry, Molecular Bio, and Biophy...
Multiheme cytochromes have been implicated in Geobacter sulfurreducens extracellular electron transf...
Background Metal reduction is thought to take place at or near the bacterial outer membrane and, thu...
The delta-proteobacterium, Geobacter sulfurreducens, can obtain energy by coupling the oxidation of ...
Background Metal reduction is thought to take place at or near the bacterial outer membrane and, thu...
The delta-proteobacterium, Geobacter sulfurreducens, can obtain energy by coupling the oxidation of ...
The delta-proteobacterium, Geobacter sulfurreducens, can obtain energy by coupling the oxidation of ...
AbstractThe respiration of metals by the bacterium Geobacter sulfurreducens requires electrons gener...
ABSTRACT Dissimilatory metal-reducing bacteria, such as Geobacter sulfurreducens, transfer electrons...
The data files include raw data as well as analyzed results for transcriptional analysis of WT G. su...
Previous studies demonstrated that an outer membrane c-type cytochrome, OmcB, was involved in Fe(III...
The potential role of outer membrane proteins in electron transfer to insoluble Fe(III) oxides by Ge...
Geobacteracea are distinct for their ability to reduce insoluble oxidants including minerals and ele...
Electroactive bacteria combine the oxidation of carbon substrates with an extracellular electron tra...
Geobacter bacteria have awakened significantly attention because of their impact on natural environm...
University of Minnesota Ph.D. dissertation. May 2018. Major: Biochemistry, Molecular Bio, and Biophy...
Multiheme cytochromes have been implicated in Geobacter sulfurreducens extracellular electron transf...
Background Metal reduction is thought to take place at or near the bacterial outer membrane and, thu...
The delta-proteobacterium, Geobacter sulfurreducens, can obtain energy by coupling the oxidation of ...
Background Metal reduction is thought to take place at or near the bacterial outer membrane and, thu...
The delta-proteobacterium, Geobacter sulfurreducens, can obtain energy by coupling the oxidation of ...
The delta-proteobacterium, Geobacter sulfurreducens, can obtain energy by coupling the oxidation of ...