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A Global Proteomic Approach Sheds New Light on Potential Iron-Sulfur Client Proteins of the Chloroplastic Maturation Factor NFU3

Iron-sulfur (Fe-S) proteins play critical functions in plants. Most Fe-S proteins are synthetized in the cytosol as apo-proteins and the subsequent Fe-S cluster incorporation relies on specific protein assembly machineries. They are notably formed by a scaffold complex, which serves for the de novo...

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Autores principales: Berger, Nathalie, Vignols, Florence, Touraine, Brigitte, Taupin-Broggini, Maël, Rofidal, Valérie, Demolombe, Vincent, Santoni, Véronique, Rouhier, Nicolas, Gaymard, Frédéric, Dubos, Christian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7672563/
https://www.ncbi.nlm.nih.gov/pubmed/33143294
http://dx.doi.org/10.3390/ijms21218121
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author Berger, Nathalie
Vignols, Florence
Touraine, Brigitte
Taupin-Broggini, Maël
Rofidal, Valérie
Demolombe, Vincent
Santoni, Véronique
Rouhier, Nicolas
Gaymard, Frédéric
Dubos, Christian
author_facet Berger, Nathalie
Vignols, Florence
Touraine, Brigitte
Taupin-Broggini, Maël
Rofidal, Valérie
Demolombe, Vincent
Santoni, Véronique
Rouhier, Nicolas
Gaymard, Frédéric
Dubos, Christian
author_sort Berger, Nathalie
collection PubMed
description Iron-sulfur (Fe-S) proteins play critical functions in plants. Most Fe-S proteins are synthetized in the cytosol as apo-proteins and the subsequent Fe-S cluster incorporation relies on specific protein assembly machineries. They are notably formed by a scaffold complex, which serves for the de novo Fe-S cluster synthesis, and by transfer proteins that insure cluster delivery to apo-targets. However, scarce information is available about the maturation pathways of most plastidial Fe-S proteins and their specificities towards transfer proteins of the associated SUF machinery. To gain more insights into these steps, the expression and protein localization of the NFU1, NFU2, and NFU3 transfer proteins were analyzed in various Arabidopsis thaliana organs and tissues showing quite similar expression patterns. In addition, quantitative proteomic analysis of an nfu3 loss-of-function mutant allowed to propose novel potential client proteins for NFU3 and to show that the protein accumulation profiles and thus metabolic adjustments differ substantially from those established in the nfu2 mutant. By clarifying the respective roles of the three plastidial NFU paralogs, these data allow better delineating the maturation process of plastidial Fe-S proteins.
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spelling pubmed-76725632020-11-19 A Global Proteomic Approach Sheds New Light on Potential Iron-Sulfur Client Proteins of the Chloroplastic Maturation Factor NFU3 Berger, Nathalie Vignols, Florence Touraine, Brigitte Taupin-Broggini, Maël Rofidal, Valérie Demolombe, Vincent Santoni, Véronique Rouhier, Nicolas Gaymard, Frédéric Dubos, Christian Int J Mol Sci Article Iron-sulfur (Fe-S) proteins play critical functions in plants. Most Fe-S proteins are synthetized in the cytosol as apo-proteins and the subsequent Fe-S cluster incorporation relies on specific protein assembly machineries. They are notably formed by a scaffold complex, which serves for the de novo Fe-S cluster synthesis, and by transfer proteins that insure cluster delivery to apo-targets. However, scarce information is available about the maturation pathways of most plastidial Fe-S proteins and their specificities towards transfer proteins of the associated SUF machinery. To gain more insights into these steps, the expression and protein localization of the NFU1, NFU2, and NFU3 transfer proteins were analyzed in various Arabidopsis thaliana organs and tissues showing quite similar expression patterns. In addition, quantitative proteomic analysis of an nfu3 loss-of-function mutant allowed to propose novel potential client proteins for NFU3 and to show that the protein accumulation profiles and thus metabolic adjustments differ substantially from those established in the nfu2 mutant. By clarifying the respective roles of the three plastidial NFU paralogs, these data allow better delineating the maturation process of plastidial Fe-S proteins. MDPI 2020-10-30 /pmc/articles/PMC7672563/ /pubmed/33143294 http://dx.doi.org/10.3390/ijms21218121 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Berger, Nathalie
Vignols, Florence
Touraine, Brigitte
Taupin-Broggini, Maël
Rofidal, Valérie
Demolombe, Vincent
Santoni, Véronique
Rouhier, Nicolas
Gaymard, Frédéric
Dubos, Christian
A Global Proteomic Approach Sheds New Light on Potential Iron-Sulfur Client Proteins of the Chloroplastic Maturation Factor NFU3
title A Global Proteomic Approach Sheds New Light on Potential Iron-Sulfur Client Proteins of the Chloroplastic Maturation Factor NFU3
title_full A Global Proteomic Approach Sheds New Light on Potential Iron-Sulfur Client Proteins of the Chloroplastic Maturation Factor NFU3
title_fullStr A Global Proteomic Approach Sheds New Light on Potential Iron-Sulfur Client Proteins of the Chloroplastic Maturation Factor NFU3
title_full_unstemmed A Global Proteomic Approach Sheds New Light on Potential Iron-Sulfur Client Proteins of the Chloroplastic Maturation Factor NFU3
title_short A Global Proteomic Approach Sheds New Light on Potential Iron-Sulfur Client Proteins of the Chloroplastic Maturation Factor NFU3
title_sort global proteomic approach sheds new light on potential iron-sulfur client proteins of the chloroplastic maturation factor nfu3
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7672563/
https://www.ncbi.nlm.nih.gov/pubmed/33143294
http://dx.doi.org/10.3390/ijms21218121
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