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Phytoene Desaturase from Oryza sativa: Oligomeric Assembly, Membrane Association and Preliminary 3D-Analysis

Recombinant phytoene desaturase (PDS-His(6)) from rice was purified to near-homogeneity and shown to be enzymatically active in a biphasic, liposome-based assay system. The protein contains FAD as the sole protein-bound redox-cofactor. Benzoquinones, not replaceable by molecular oxygen, serve as a f...

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Autores principales: Gemmecker, Sandra, Schaub, Patrick, Koschmieder, Julian, Brausemann, Anton, Drepper, Friedel, Rodriguez-Franco, Marta, Ghisla, Sandro, Warscheid, Bettina, Einsle, Oliver, Beyer, Peter
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4492965/
https://www.ncbi.nlm.nih.gov/pubmed/26147209
http://dx.doi.org/10.1371/journal.pone.0131717
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author Gemmecker, Sandra
Schaub, Patrick
Koschmieder, Julian
Brausemann, Anton
Drepper, Friedel
Rodriguez-Franco, Marta
Ghisla, Sandro
Warscheid, Bettina
Einsle, Oliver
Beyer, Peter
author_facet Gemmecker, Sandra
Schaub, Patrick
Koschmieder, Julian
Brausemann, Anton
Drepper, Friedel
Rodriguez-Franco, Marta
Ghisla, Sandro
Warscheid, Bettina
Einsle, Oliver
Beyer, Peter
author_sort Gemmecker, Sandra
collection PubMed
description Recombinant phytoene desaturase (PDS-His(6)) from rice was purified to near-homogeneity and shown to be enzymatically active in a biphasic, liposome-based assay system. The protein contains FAD as the sole protein-bound redox-cofactor. Benzoquinones, not replaceable by molecular oxygen, serve as a final electron acceptor defining PDS as a 15-cis-phytoene (donor):plastoquinone oxidoreductase. The herbicidal PDS-inhibitor norflurazon is capable of arresting the reaction by stabilizing the intermediary FAD(red), while an excess of the quinone acceptor relieves this blockage, indicating competition. The enzyme requires its homo-oligomeric association for activity. The sum of data collected through gel permeation chromatography, non-denaturing polyacrylamide electrophoresis, chemical cross-linking, mass spectrometry and electron microscopy techniques indicate that the high-order oligomers formed in solution are the basis for an active preparation. Of these, a tetramer consisting of dimers represents the active unit. This is corroborated by our preliminary X-ray structural analysis that also revealed similarities of the protein fold with the sequence-inhomologous bacterial phytoene desaturase CRTI and other oxidoreductases of the GR2-family of flavoproteins. This points to an evolutionary relatedness of CRTI and PDS yielding different carotene desaturation sequences based on homologous protein folds.
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spelling pubmed-44929652015-07-15 Phytoene Desaturase from Oryza sativa: Oligomeric Assembly, Membrane Association and Preliminary 3D-Analysis Gemmecker, Sandra Schaub, Patrick Koschmieder, Julian Brausemann, Anton Drepper, Friedel Rodriguez-Franco, Marta Ghisla, Sandro Warscheid, Bettina Einsle, Oliver Beyer, Peter PLoS One Research Article Recombinant phytoene desaturase (PDS-His(6)) from rice was purified to near-homogeneity and shown to be enzymatically active in a biphasic, liposome-based assay system. The protein contains FAD as the sole protein-bound redox-cofactor. Benzoquinones, not replaceable by molecular oxygen, serve as a final electron acceptor defining PDS as a 15-cis-phytoene (donor):plastoquinone oxidoreductase. The herbicidal PDS-inhibitor norflurazon is capable of arresting the reaction by stabilizing the intermediary FAD(red), while an excess of the quinone acceptor relieves this blockage, indicating competition. The enzyme requires its homo-oligomeric association for activity. The sum of data collected through gel permeation chromatography, non-denaturing polyacrylamide electrophoresis, chemical cross-linking, mass spectrometry and electron microscopy techniques indicate that the high-order oligomers formed in solution are the basis for an active preparation. Of these, a tetramer consisting of dimers represents the active unit. This is corroborated by our preliminary X-ray structural analysis that also revealed similarities of the protein fold with the sequence-inhomologous bacterial phytoene desaturase CRTI and other oxidoreductases of the GR2-family of flavoproteins. This points to an evolutionary relatedness of CRTI and PDS yielding different carotene desaturation sequences based on homologous protein folds. Public Library of Science 2015-07-06 /pmc/articles/PMC4492965/ /pubmed/26147209 http://dx.doi.org/10.1371/journal.pone.0131717 Text en © 2015 Gemmecker et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Gemmecker, Sandra
Schaub, Patrick
Koschmieder, Julian
Brausemann, Anton
Drepper, Friedel
Rodriguez-Franco, Marta
Ghisla, Sandro
Warscheid, Bettina
Einsle, Oliver
Beyer, Peter
Phytoene Desaturase from Oryza sativa: Oligomeric Assembly, Membrane Association and Preliminary 3D-Analysis
title Phytoene Desaturase from Oryza sativa: Oligomeric Assembly, Membrane Association and Preliminary 3D-Analysis
title_full Phytoene Desaturase from Oryza sativa: Oligomeric Assembly, Membrane Association and Preliminary 3D-Analysis
title_fullStr Phytoene Desaturase from Oryza sativa: Oligomeric Assembly, Membrane Association and Preliminary 3D-Analysis
title_full_unstemmed Phytoene Desaturase from Oryza sativa: Oligomeric Assembly, Membrane Association and Preliminary 3D-Analysis
title_short Phytoene Desaturase from Oryza sativa: Oligomeric Assembly, Membrane Association and Preliminary 3D-Analysis
title_sort phytoene desaturase from oryza sativa: oligomeric assembly, membrane association and preliminary 3d-analysis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4492965/
https://www.ncbi.nlm.nih.gov/pubmed/26147209
http://dx.doi.org/10.1371/journal.pone.0131717
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