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Organization of the Escherichia coli aerobic enzyme complexes of oxidative phosphorylation in dynamic domains within the cytoplasmic membrane

The Escherichia coli cytoplasmic membrane contains the enzyme complexes of oxidative phosphorylation (OXPHOS). Not much is known about their supramolecular organization and their dynamics within the membrane in this model organism. In mitochondria and other bacteria, it was demonstrated by nondenatu...

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Autores principales: Erhardt, Heiko, Dempwolff, Felix, Pfreundschuh, Moritz, Riehle, Marc, Schäfer, Caspar, Pohl, Thomas, Graumann, Peter, Friedrich, Thorsten
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Blackwell Publishing Ltd 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4082705/
https://www.ncbi.nlm.nih.gov/pubmed/24729508
http://dx.doi.org/10.1002/mbo3.163
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author Erhardt, Heiko
Dempwolff, Felix
Pfreundschuh, Moritz
Riehle, Marc
Schäfer, Caspar
Pohl, Thomas
Graumann, Peter
Friedrich, Thorsten
author_facet Erhardt, Heiko
Dempwolff, Felix
Pfreundschuh, Moritz
Riehle, Marc
Schäfer, Caspar
Pohl, Thomas
Graumann, Peter
Friedrich, Thorsten
author_sort Erhardt, Heiko
collection PubMed
description The Escherichia coli cytoplasmic membrane contains the enzyme complexes of oxidative phosphorylation (OXPHOS). Not much is known about their supramolecular organization and their dynamics within the membrane in this model organism. In mitochondria and other bacteria, it was demonstrated by nondenaturing electrophoretic methods and electron microscopy that the OXPHOS complexes are organized in so-called supercomplexes, stable assemblies with a defined number of the individual enzyme complexes. To investigate the organization of the E. coli enzyme complexes of aerobic OXPHOS in vivo, we established fluorescent protein fusions of the NADH:ubiquinone oxidoreductase, the succinate:ubiquinone oxidoreductase, the cytochrome bd-I, and the cytochrome bo(3) terminal oxidases, and the F(o)F(1) ATP-synthase. The fusions were integrated in the chromosome to prevent artifacts caused by protein overproduction. Biochemical analysis revealed that all modified complexes were fully assembled, active, and stable. The distribution of the OXPHOS complexes in living cells was determined using total internal reflection fluorescence microscopy. The dynamics within the membrane were detected by fluorescence recovery after photobleaching. All aerobic OXPHOS complexes showed an uneven distribution in large mobile patches within the E. coli cytoplasmic membrane. It is discussed whether the individual OXPHOS complexes are organized as clustered individual complexes, here called “segrazones.”
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spelling pubmed-40827052014-07-18 Organization of the Escherichia coli aerobic enzyme complexes of oxidative phosphorylation in dynamic domains within the cytoplasmic membrane Erhardt, Heiko Dempwolff, Felix Pfreundschuh, Moritz Riehle, Marc Schäfer, Caspar Pohl, Thomas Graumann, Peter Friedrich, Thorsten Microbiologyopen Original Research The Escherichia coli cytoplasmic membrane contains the enzyme complexes of oxidative phosphorylation (OXPHOS). Not much is known about their supramolecular organization and their dynamics within the membrane in this model organism. In mitochondria and other bacteria, it was demonstrated by nondenaturing electrophoretic methods and electron microscopy that the OXPHOS complexes are organized in so-called supercomplexes, stable assemblies with a defined number of the individual enzyme complexes. To investigate the organization of the E. coli enzyme complexes of aerobic OXPHOS in vivo, we established fluorescent protein fusions of the NADH:ubiquinone oxidoreductase, the succinate:ubiquinone oxidoreductase, the cytochrome bd-I, and the cytochrome bo(3) terminal oxidases, and the F(o)F(1) ATP-synthase. The fusions were integrated in the chromosome to prevent artifacts caused by protein overproduction. Biochemical analysis revealed that all modified complexes were fully assembled, active, and stable. The distribution of the OXPHOS complexes in living cells was determined using total internal reflection fluorescence microscopy. The dynamics within the membrane were detected by fluorescence recovery after photobleaching. All aerobic OXPHOS complexes showed an uneven distribution in large mobile patches within the E. coli cytoplasmic membrane. It is discussed whether the individual OXPHOS complexes are organized as clustered individual complexes, here called “segrazones.” Blackwell Publishing Ltd 2014-06 2014-04-12 /pmc/articles/PMC4082705/ /pubmed/24729508 http://dx.doi.org/10.1002/mbo3.163 Text en © 2014 The Authors. MicrobiologyOpen published by John Wiley & Sons Ltd. http://creativecommons.org/licenses/by/3.0/ This is an open access article under the terms of the Creative Commons Attribution License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Research
Erhardt, Heiko
Dempwolff, Felix
Pfreundschuh, Moritz
Riehle, Marc
Schäfer, Caspar
Pohl, Thomas
Graumann, Peter
Friedrich, Thorsten
Organization of the Escherichia coli aerobic enzyme complexes of oxidative phosphorylation in dynamic domains within the cytoplasmic membrane
title Organization of the Escherichia coli aerobic enzyme complexes of oxidative phosphorylation in dynamic domains within the cytoplasmic membrane
title_full Organization of the Escherichia coli aerobic enzyme complexes of oxidative phosphorylation in dynamic domains within the cytoplasmic membrane
title_fullStr Organization of the Escherichia coli aerobic enzyme complexes of oxidative phosphorylation in dynamic domains within the cytoplasmic membrane
title_full_unstemmed Organization of the Escherichia coli aerobic enzyme complexes of oxidative phosphorylation in dynamic domains within the cytoplasmic membrane
title_short Organization of the Escherichia coli aerobic enzyme complexes of oxidative phosphorylation in dynamic domains within the cytoplasmic membrane
title_sort organization of the escherichia coli aerobic enzyme complexes of oxidative phosphorylation in dynamic domains within the cytoplasmic membrane
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4082705/
https://www.ncbi.nlm.nih.gov/pubmed/24729508
http://dx.doi.org/10.1002/mbo3.163
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