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  • Rate enhancement of bacterial extracellular electron transport involves bound flavin semiquinones.

Rate enhancement of bacterial extracellular electron transport involves bound flavin semiquinones.

Proceedings of the National Academy of Sciences of the United States of America (2013-04-12)
Akihiro Okamoto, Kazuhito Hashimoto, Kenneth H Nealson, Ryuhei Nakamura
ZUSAMMENFASSUNG

Extracellular redox-active compounds, flavins and other quinones, have been hypothesized to play a major role in the delivery of electrons from cellular metabolic systems to extracellular insoluble substrates by a diffusion-based shuttling two-electron-transfer mechanism. Here we show that flavin molecules secreted by Shewanella oneidensis MR-1 enhance the ability of its outer-membrane c-type cytochromes (OM c-Cyts) to transport electrons as redox cofactors, but not free-form flavins. Whole-cell differential pulse voltammetry revealed that the redox potential of flavin was reversibly shifted more than 100 mV in a positive direction, in good agreement with increasing microbial current generation. Importantly, this flavin/OM c-Cyts interaction was found to facilitate a one-electron redox reaction via a semiquinone, resulting in a 10(3)- to 10(5)-fold faster reaction rate than that of free flavin. These results are not consistent with previously proposed redox-shuttling mechanisms but suggest that the flavin/OM c-Cyts interaction regulates the extent of extracellular electron transport coupled with intracellular metabolic activity.

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Sigma-Aldrich
Cytochrom c aus Pferdeherz, ≥95% (SDS-PAGE)
Sigma-Aldrich
Cytochrom c aus Rinderherz, ≥95% based on Mol. Wt. 12,327 basis
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Cytochrom c aus Pferdeherz, ≥95% based on Mol. Wt. 12,384 basis
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Cytochrom c aus Rinderherz, ≥95% based on Mol. Wt. 12,327 basis, powder, suitable for mammalian cell culture
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Riboflavin 5′-Monophosphat Natriumsalz Hydrat, synthetic, ≥70% (HPLC)
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Riboflavin 5′-Monophosphat Natriumsalz Hydrat, 73-79% (fluorimetric)
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Cytochrome c from Saccharomyces cerevisiae, ≥85% based on Mol. Wt. 12,588 basis
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Cytochrom c aus Pferdeherz, BioReagent, suitable for GFC marker
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Cytochrom c aus Pferdeherz, BioUltra, ≥99% (SDS-PAGE), powder, suitable for mammalian cell culture
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ProteoMass Cytochrom c MALDI-MS-Standard, vial of 10 nmol, (M+H+) 12,361.96 Da by calculation
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Riboflavin 5′-Monophosphat Natriumsalz Hydrat, suitable for electrophoresis, suitable for acrylamide photopolymerization, ≥70%, powder
Riboflavinnatriumphosphat, European Pharmacopoeia (EP) Reference Standard
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Cytochrom c aus Taubenbrustmuskel, ≥95% based on Mol. Wt. 12,173 basis
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Riboflavin-Natriumphosphat-Hydrat, tested according to Ph. Eur.