scholarly article | Q13442814 |
P6179 | Dimensions Publication ID | 1029043657 |
P356 | DOI | 10.1038/SREP11677 |
P2888 | exact match | https://scigraph.springernature.com/pub.10.1038/srep11677 |
P932 | PMC publication ID | 4486940 |
P698 | PubMed publication ID | 26126857 |
P5875 | ResearchGate publication ID | 279736203 |
P50 | author | Emma V Ainsworth | Q56440850 |
Tom A. Clarke | Q74311745 | ||
Jim K Fredrickson | Q89446807 | ||
John M Zachara | Q117279217 | ||
Gaye F White | Q121409882 | ||
Julea N Butt | Q47504381 | ||
P2093 | author name string | Michael Norman | |
Liang Shi | |||
David J Richardson | |||
Alice Tome-Fernandez | |||
Marcus J Edwards | |||
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Flavin electron shuttles dominate extracellular electron transfer by Shewanella oneidensis | Q41954433 | ||
Role of outer-membrane cytochromes MtrC and OmcA in the biomineralization of ferrihydrite by Shewanella oneidensis MR-1. | Q43225473 | ||
The X-ray crystal structure of Shewanella oneidensis OmcA reveals new insight at the microbe-mineral interface | Q46514318 | ||
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Transcriptional and proteomic analysis of a ferric uptake regulator (fur) mutant of Shewanella oneidensis: possible involvement of fur in energy metabolism, transcriptional regulation, and oxidative stress | Q34099925 | ||
Shewanella oneidensis MR-1 nanowires are outer membrane and periplasmic extensions of the extracellular electron transport components | Q34144770 | ||
Electrical transport along bacterial nanowires from Shewanella oneidensis MR-1. | Q34241189 | ||
Isolation of a high-affinity functional protein complex between OmcA and MtrC: Two outer membrane decaheme c-type cytochromes of Shewanella oneidensis MR-1 | Q34540409 | ||
BLAST: a more efficient report with usability improvements | Q34681373 | ||
Extracellular reduction of hexavalent chromium by cytochromes MtrC and OmcA of Shewanella oneidensis MR-1 | Q35091903 | ||
How radiation kills cells: survival of Deinococcus radiodurans and Shewanella oneidensis under oxidative stress | Q36088685 | ||
Shewanella secretes flavins that mediate extracellular electron transfer | Q36499060 | ||
P275 | copyright license | Creative Commons Attribution 4.0 International | Q20007257 |
P6216 | copyright status | copyrighted | Q50423863 |
P407 | language of work or name | English | Q1860 |
P304 | page(s) | 11677 | |
P577 | publication date | 2015-07-01 | |
P1433 | published in | Scientific Reports | Q2261792 |
P1476 | title | Redox Linked Flavin Sites in Extracellular Decaheme Proteins Involved in Microbe-Mineral Electron Transfer | |
P478 | volume | 5 |
Q64236177 | Addition of Riboflavin-Coupled Magnetic Beads Increases Current Production in Bioelectrochemical Systems via the Increased Formation of Anode-Biofilms |
Q47448772 | Bucking the current trend in bioelectrochemical systems: a case for bioelectroanalytics |
Q28069190 | Cation-limited kinetic model for microbial extracellular electron transport via an outer membrane cytochrome C complex |
Q59600321 | Characterization of OmcA Mutants from Shewanella oneidensis MR-1 to Investigate the Molecular Mechanisms Underpinning Electron Transfer Across the Microbe-Electrode Interface |
Q64062414 | Chemical Characteristics of Electron Shuttles Affect Extracellular Electron Transfer: NTOU1 Simultaneously Exploiting Acetate and Mediators |
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Q42268910 | Effect of oxygen on the per-cell extracellular electron transfer rate of Shewanella oneidensis MR-1 explored in bioelectrochemical systems |
Q88511790 | Electrochemical Detection of Deuterium Kinetic Isotope Effect on Extracellular Electron Transport in Shewanella oneidensis MR-1 |
Q38923077 | Electromicrobiology: realities, grand challenges, goals and predictions. |
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Q41539932 | Exploring Step-by-Step Assembly of Nanoparticle:Cytochrome Biohybrid Photoanodes. |
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Q36426352 | Flavin Binding to the Deca-heme Cytochrome MtrC: Insights from Computational Molecular Simulation |
Q41907538 | High Performance Reduction of H2O2 with an Electron Transport Decaheme Cytochrome on a Porous ITO Electrode |
Q92734562 | How Thermophilic Gram-Positive Organisms Perform Extracellular Electron Transfer: Characterization of the Cell Surface Terminal Reductase OcwA |
Q27333758 | In Situ Analysis of a Silver Nanoparticle-Precipitating Shewanella Biofilm by Surface Enhanced Confocal Raman Microscopy |
Q57930841 | NanoSIMS imaging of extracellular electron transport processes during microbial iron(III) reduction |
Q46402829 | Outer membrane cytochromes/flavin interactions in Shewanella spp.-A molecular perspective |
Q90352134 | Overview on the Bacterial Iron-Riboflavin Metabolic Axis |
Q28818001 | Photoreduction of Shewanella oneidensis Extracellular Cytochromes by Organic Chromophores and Dye-Sensitized TiO2 |
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Q47352768 | Reply to Breuer et al.: Molecular dynamics simulations do not provide functionally relevant values of redox potential in MtrF. |
Q92595533 | Secreted Flavin Cofactors for Anaerobic Respiration of Fumarate and Urocanate by Shewanella oneidensis: Cost and Role |
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Q46263530 | The Functional Mechanisms and Application of Electron Shuttles in Extracellular Electron Transfer |
Q38947058 | The role of riboflavin in decolourisation of Congo red and bioelectricity production using Shewanella oneidensis-MR1 under MFC and non-MFC conditions |
Q64085055 | Thermophiles; or, the Modern Prometheus: The Importance of Extreme Microorganisms for Understanding and Applying Extracellular Electron Transfer |
Q51746799 | Tracking Electron Uptake from a Cathode into Shewanella Cells: Implications for Energy Acquisition from Solid-Substrate Electron Donors. |
Q52725619 | Ultrastructure of Shewanella oneidensis MR-1 nanowires revealed by electron cryotomography. |
Q58593813 | Whole-cell circular dichroism difference spectroscopy reveals an in vivo-specific deca-heme conformation in bacterial surface cytochromes |
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