Matches in SemOpenAlex for { <https://semopenalex.org/work/W3007310588> ?p ?o ?g. }
- W3007310588 endingPage "5203" @default.
- W3007310588 startingPage "5194" @default.
- W3007310588 abstract "Extracellular electron transfer (EET) in microorganisms is prevalent in nature and has been utilized in functional bioelectrochemical systems. EET of Geobacter sulfurreducens has been extensively studied and has been revealed to be facilitated through c-type cytochromes, which mediate charge between the electrode and G. sulfurreducens in anodic mode. However, the EET pathway of cathodic conversion of fumarate to succinate is still under debate. Here, we apply a variety of analytical methods, including electrochemistry, UV–vis absorption and resonance Raman spectroscopy, quartz crystal microbalance with dissipation, and electron microscopy, to understand the involvement of cytochromes and other possible electron-mediating species in the switching between anodic and cathodic reaction modes. By switching the applied bias for a G. sulfurreducens biofilm coupled to investigating the quantity and function of cytochromes, as well as the emergence of Fe-containing particles on the cell membrane, we provide evidence of a diminished role of cytochromes in cathodic EET. This work sheds light on the mechanisms of G. sulfurreducens biofilm growth and suggests the possible existence of a nonheme, iron-involving EET process in cathodic mode." @default.
- W3007310588 created "2020-03-06" @default.
- W3007310588 creator A5018580006 @default.
- W3007310588 creator A5025071817 @default.
- W3007310588 creator A5026491082 @default.
- W3007310588 creator A5054249958 @default.
- W3007310588 creator A5060827694 @default.
- W3007310588 creator A5065656249 @default.
- W3007310588 creator A5078992280 @default.
- W3007310588 date "2020-02-17" @default.
- W3007310588 modified "2023-10-11" @default.
- W3007310588 title "Disparity of Cytochrome Utilization in Anodic and Cathodic Extracellular Electron Transfer Pathways of <i>Geobacter sulfurreducens</i> Biofilms" @default.
- W3007310588 cites W1929539987 @default.
- W3007310588 cites W1965497387 @default.
- W3007310588 cites W1994588660 @default.
- W3007310588 cites W2002063268 @default.
- W3007310588 cites W2007936384 @default.
- W3007310588 cites W2012835318 @default.
- W3007310588 cites W2025335260 @default.
- W3007310588 cites W2037219738 @default.
- W3007310588 cites W2038463992 @default.
- W3007310588 cites W2039241535 @default.
- W3007310588 cites W2040325568 @default.
- W3007310588 cites W2048076512 @default.
- W3007310588 cites W2052444557 @default.
- W3007310588 cites W2063963355 @default.
- W3007310588 cites W2091363744 @default.
- W3007310588 cites W2095847278 @default.
- W3007310588 cites W2110400991 @default.
- W3007310588 cites W2110485832 @default.
- W3007310588 cites W2112216401 @default.
- W3007310588 cites W2124432926 @default.
- W3007310588 cites W2129402332 @default.
- W3007310588 cites W2131193248 @default.
- W3007310588 cites W2133318359 @default.
- W3007310588 cites W2141777061 @default.
- W3007310588 cites W2144846202 @default.
- W3007310588 cites W2156366019 @default.
- W3007310588 cites W2157443270 @default.
- W3007310588 cites W2165744424 @default.
- W3007310588 cites W2166400938 @default.
- W3007310588 cites W2170293964 @default.
- W3007310588 cites W2255475533 @default.
- W3007310588 cites W2282305870 @default.
- W3007310588 cites W2319810990 @default.
- W3007310588 cites W2328315216 @default.
- W3007310588 cites W2405862854 @default.
- W3007310588 cites W2407275875 @default.
- W3007310588 cites W2412520413 @default.
- W3007310588 cites W2497805589 @default.
- W3007310588 cites W2502544585 @default.
- W3007310588 cites W2518467579 @default.
- W3007310588 cites W2594018728 @default.
- W3007310588 cites W2597651742 @default.
- W3007310588 cites W2607375411 @default.
- W3007310588 cites W2754746036 @default.
- W3007310588 cites W2784394574 @default.
- W3007310588 cites W2790178016 @default.
- W3007310588 cites W2799602707 @default.
- W3007310588 cites W2890807726 @default.
- W3007310588 cites W2893029634 @default.
- W3007310588 cites W2913422786 @default.
- W3007310588 cites W2914299958 @default.
- W3007310588 cites W2919961171 @default.
- W3007310588 cites W2924405706 @default.
- W3007310588 cites W2938505199 @default.
- W3007310588 cites W2943342945 @default.
- W3007310588 cites W2947037545 @default.
- W3007310588 cites W2992620947 @default.
- W3007310588 cites W3006354415 @default.
- W3007310588 doi "https://doi.org/10.1021/jacs.9b13077" @default.
- W3007310588 hasPubMedCentralId "https://www.ncbi.nlm.nih.gov/pmc/articles/7082794" @default.
- W3007310588 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/32066233" @default.
- W3007310588 hasPublicationYear "2020" @default.
- W3007310588 type Work @default.
- W3007310588 sameAs 3007310588 @default.
- W3007310588 citedByCount "49" @default.
- W3007310588 countsByYear W30073105882020 @default.
- W3007310588 countsByYear W30073105882021 @default.
- W3007310588 countsByYear W30073105882022 @default.
- W3007310588 countsByYear W30073105882023 @default.
- W3007310588 crossrefType "journal-article" @default.
- W3007310588 hasAuthorship W3007310588A5018580006 @default.
- W3007310588 hasAuthorship W3007310588A5025071817 @default.
- W3007310588 hasAuthorship W3007310588A5026491082 @default.
- W3007310588 hasAuthorship W3007310588A5054249958 @default.
- W3007310588 hasAuthorship W3007310588A5060827694 @default.
- W3007310588 hasAuthorship W3007310588A5065656249 @default.
- W3007310588 hasAuthorship W3007310588A5078992280 @default.
- W3007310588 hasBestOaLocation W30073105882 @default.
- W3007310588 hasConcept C120665830 @default.
- W3007310588 hasConcept C121332964 @default.
- W3007310588 hasConcept C123669783 @default.
- W3007310588 hasConcept C12554922 @default.
- W3007310588 hasConcept C147789679 @default.
- W3007310588 hasConcept C17525397 @default.
- W3007310588 hasConcept C185592680 @default.
- W3007310588 hasConcept C205871581 @default.