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Aromatic Amino Acids Required for Pili Conductivity and Long-Range Extracellular Electron Transport in Geobacter sulfurreducens

It has been proposed that Geobacter sulfurreducens requires conductive pili for long-range electron transport to Fe(III) oxides and for high-density current production in microbial fuel cells. In order to investigate this further, we constructed a strain of G. sulfurreducens, designated Aro-5, which...

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Autores principales: Vargas, Madeline, Malvankar, Nikhil S., Tremblay, Pier-Luc, Leang, Ching, Smith, Jessica A., Patel, Pranav, Synoeyenbos-West, Oona, Nevin, Kelly P., Lovley, Derek R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society of Microbiology 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3604773/
https://www.ncbi.nlm.nih.gov/pubmed/23481602
http://dx.doi.org/10.1128/mBio.00105-13
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author Vargas, Madeline
Malvankar, Nikhil S.
Tremblay, Pier-Luc
Leang, Ching
Smith, Jessica A.
Patel, Pranav
Synoeyenbos-West, Oona
Nevin, Kelly P.
Lovley, Derek R.
author_facet Vargas, Madeline
Malvankar, Nikhil S.
Tremblay, Pier-Luc
Leang, Ching
Smith, Jessica A.
Patel, Pranav
Synoeyenbos-West, Oona
Nevin, Kelly P.
Lovley, Derek R.
author_sort Vargas, Madeline
collection PubMed
description It has been proposed that Geobacter sulfurreducens requires conductive pili for long-range electron transport to Fe(III) oxides and for high-density current production in microbial fuel cells. In order to investigate this further, we constructed a strain of G. sulfurreducens, designated Aro-5, which produced pili with diminished conductivity. This was accomplished by modifying the amino acid sequence of PilA, the structural pilin protein. An alanine was substituted for each of the five aromatic amino acids in the carboxyl terminus of PilA, the region in which G. sulfurreducens PilA differs most significantly from the PilAs of microorganisms incapable of long-range extracellular electron transport. Strain Aro-5 produced pili that were properly decorated with the multiheme c-type cytochrome OmcS, which is essential for Fe(III) oxide reduction. However, pili preparations of the Aro-5 strain had greatly diminished conductivity and Aro-5 cultures were severely limited in their capacity to reduce Fe(III) compared to the control strain. Current production of the Aro-5 strain, with a graphite anode serving as the electron acceptor, was less than 10% of that of the control strain. The conductivity of the Aro-5 biofilms was 10-fold lower than the control strain’s. These results demonstrate that the pili of G. sulfurreducens must be conductive in order for the cells to be effective in extracellular long-range electron transport.
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spelling pubmed-36047732013-03-21 Aromatic Amino Acids Required for Pili Conductivity and Long-Range Extracellular Electron Transport in Geobacter sulfurreducens Vargas, Madeline Malvankar, Nikhil S. Tremblay, Pier-Luc Leang, Ching Smith, Jessica A. Patel, Pranav Synoeyenbos-West, Oona Nevin, Kelly P. Lovley, Derek R. mBio Research Article It has been proposed that Geobacter sulfurreducens requires conductive pili for long-range electron transport to Fe(III) oxides and for high-density current production in microbial fuel cells. In order to investigate this further, we constructed a strain of G. sulfurreducens, designated Aro-5, which produced pili with diminished conductivity. This was accomplished by modifying the amino acid sequence of PilA, the structural pilin protein. An alanine was substituted for each of the five aromatic amino acids in the carboxyl terminus of PilA, the region in which G. sulfurreducens PilA differs most significantly from the PilAs of microorganisms incapable of long-range extracellular electron transport. Strain Aro-5 produced pili that were properly decorated with the multiheme c-type cytochrome OmcS, which is essential for Fe(III) oxide reduction. However, pili preparations of the Aro-5 strain had greatly diminished conductivity and Aro-5 cultures were severely limited in their capacity to reduce Fe(III) compared to the control strain. Current production of the Aro-5 strain, with a graphite anode serving as the electron acceptor, was less than 10% of that of the control strain. The conductivity of the Aro-5 biofilms was 10-fold lower than the control strain’s. These results demonstrate that the pili of G. sulfurreducens must be conductive in order for the cells to be effective in extracellular long-range electron transport. American Society of Microbiology 2013-03-12 /pmc/articles/PMC3604773/ /pubmed/23481602 http://dx.doi.org/10.1128/mBio.00105-13 Text en Copyright © 2013 Vargas et al. http://creativecommons.org/licenses/by-nc-sa/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution-Noncommercial-ShareAlike 3.0 Unported (http://creativecommons.org/licenses/by-nc-sa/3.0/) license, which permits unrestricted noncommercial use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Vargas, Madeline
Malvankar, Nikhil S.
Tremblay, Pier-Luc
Leang, Ching
Smith, Jessica A.
Patel, Pranav
Synoeyenbos-West, Oona
Nevin, Kelly P.
Lovley, Derek R.
Aromatic Amino Acids Required for Pili Conductivity and Long-Range Extracellular Electron Transport in Geobacter sulfurreducens
title Aromatic Amino Acids Required for Pili Conductivity and Long-Range Extracellular Electron Transport in Geobacter sulfurreducens
title_full Aromatic Amino Acids Required for Pili Conductivity and Long-Range Extracellular Electron Transport in Geobacter sulfurreducens
title_fullStr Aromatic Amino Acids Required for Pili Conductivity and Long-Range Extracellular Electron Transport in Geobacter sulfurreducens
title_full_unstemmed Aromatic Amino Acids Required for Pili Conductivity and Long-Range Extracellular Electron Transport in Geobacter sulfurreducens
title_short Aromatic Amino Acids Required for Pili Conductivity and Long-Range Extracellular Electron Transport in Geobacter sulfurreducens
title_sort aromatic amino acids required for pili conductivity and long-range extracellular electron transport in geobacter sulfurreducens
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3604773/
https://www.ncbi.nlm.nih.gov/pubmed/23481602
http://dx.doi.org/10.1128/mBio.00105-13
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