Geobacter sulfurreducens, generally considered to be a strict anaerobe, is a predominant microbe in subsurface environments, where it utilizes available metals as electron acceptors. To better understand the metabolic processes involved in the metal-reduction capability of this microbe, the proteins expressed by cells grown anaerobically with either fumarate or ferric citrate as electron acceptor were compared. Proteins were separated by 2-DE under denaturing or nondenaturing conditions, and proteins varying in abundance with a high level of statistical significance (p\u3c0.0001) were identified by peptide mass analysis. Denaturing 2-DE revealed significant differences in the relative abundance of the membrane proteins OmpA and peptidoglyca...
Bacterial extracellular metal respiration, as carried out by members of the genus <i>Geobacter</i>, ...
A 9.6 kDa periplasmic c -type cytochrome, designated PpcA, was purified from the Fe(III)-reducing ba...
Background Geobacter sulfurreducens is capable of coupling the complete oxidation of organic compoun...
Geobacter sulfurreducens, generally considered to be a strict anaerobe, is a predominant microbe in ...
Biological Fe(III) reduction is an environmentally significant process, but the mechanisms of electr...
Geobacter species predominate in aquatic sediments and submerged soils where organic carbon sources ...
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...
The proteome of Geobacter sulfurreducens, a model for the Geobacter species that predominate in many...
Previous studies demonstrated that an outer membrane c-type cytochrome, OmcB, was involved in Fe(III...
The c-type cytochrome (OmcB) and the multicopper protein (OmpB) required for Fe(III) oxide reduction...
Background Metal reduction is thought to take place at or near the bacterial outer membrane and, thu...
University of Minnesota Ph.D. dissertation. August 2013. Major: Microbiology, Immunology and Cancer ...
Geobacter sulfurreducens is a model bacterium to study the degradation of organic compounds coupled ...
A soluble ferric reductase, SfrAB, which catalysed the NADPH-dependent reduction of chelated Fe(III)...
Bacterial extracellular metal respiration, as carried out by members of the genus <i>Geobacter</i>, ...
A 9.6 kDa periplasmic c -type cytochrome, designated PpcA, was purified from the Fe(III)-reducing ba...
Background Geobacter sulfurreducens is capable of coupling the complete oxidation of organic compoun...
Geobacter sulfurreducens, generally considered to be a strict anaerobe, is a predominant microbe in ...
Biological Fe(III) reduction is an environmentally significant process, but the mechanisms of electr...
Geobacter species predominate in aquatic sediments and submerged soils where organic carbon sources ...
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...
The proteome of Geobacter sulfurreducens, a model for the Geobacter species that predominate in many...
Previous studies demonstrated that an outer membrane c-type cytochrome, OmcB, was involved in Fe(III...
The c-type cytochrome (OmcB) and the multicopper protein (OmpB) required for Fe(III) oxide reduction...
Background Metal reduction is thought to take place at or near the bacterial outer membrane and, thu...
University of Minnesota Ph.D. dissertation. August 2013. Major: Microbiology, Immunology and Cancer ...
Geobacter sulfurreducens is a model bacterium to study the degradation of organic compounds coupled ...
A soluble ferric reductase, SfrAB, which catalysed the NADPH-dependent reduction of chelated Fe(III)...
Bacterial extracellular metal respiration, as carried out by members of the genus <i>Geobacter</i>, ...
A 9.6 kDa periplasmic c -type cytochrome, designated PpcA, was purified from the Fe(III)-reducing ba...
Background Geobacter sulfurreducens is capable of coupling the complete oxidation of organic compoun...