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The pentatricopeptide repeat MTSF1 protein stabilizes the nad4 mRNA in Arabidopsis mitochondria

Gene expression in plant mitochondria involves a complex collaboration of transcription initiation and termination, as well as subsequent mRNA processing to produce mature mRNAs. In this study, we describe the function of the Arabidopsis mitochondrial stability factor 1 (MTSF1) gene and show that it...

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Autores principales: Haïli, Nawel, Arnal, Nadège, Quadrado, Martine, Amiar, Souad, Tcherkez, Guillaume, Dahan, Jennifer, Briozzo, Pierre, Colas des Francs-Small, Catherine, Vrielynck, Nathalie, Mireau, Hakim
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2013
Materias:
RNA
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3711453/
https://www.ncbi.nlm.nih.gov/pubmed/23658225
http://dx.doi.org/10.1093/nar/gkt337
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author Haïli, Nawel
Arnal, Nadège
Quadrado, Martine
Amiar, Souad
Tcherkez, Guillaume
Dahan, Jennifer
Briozzo, Pierre
Colas des Francs-Small, Catherine
Vrielynck, Nathalie
Mireau, Hakim
author_facet Haïli, Nawel
Arnal, Nadège
Quadrado, Martine
Amiar, Souad
Tcherkez, Guillaume
Dahan, Jennifer
Briozzo, Pierre
Colas des Francs-Small, Catherine
Vrielynck, Nathalie
Mireau, Hakim
author_sort Haïli, Nawel
collection PubMed
description Gene expression in plant mitochondria involves a complex collaboration of transcription initiation and termination, as well as subsequent mRNA processing to produce mature mRNAs. In this study, we describe the function of the Arabidopsis mitochondrial stability factor 1 (MTSF1) gene and show that it encodes a pentatricopeptide repeat protein essential for the 3′-processing of mitochondrial nad4 mRNA and its stability. The nad4 mRNA is highly destabilized in Arabidopsis mtsf1 mutant plants, which consequently accumulates low amounts of a truncated form of respiratory complex I. Biochemical and genetic analyses demonstrated that MTSF1 binds with high affinity to the last 20 nucleotides of nad4 mRNA. Our data support a model for MTSF1 functioning in which its association with the last nucleotides of the nad4 3′ untranslated region stabilizes nad4 mRNA. Additionally, strict conservation of the MTSF1-binding sites strongly suggests that the protective function of MTSF1 on nad4 mRNA is conserved in dicots. These results demonstrate that the mRNA stabilization process initially identified in plastids, whereby proteins bound to RNA extremities constitute barriers to exoribonuclease progression occur in plant mitochondria to protect and concomitantly define the 3′ end of mature mitochondrial mRNAs. Our study also reveals that short RNA molecules corresponding to pentatricopeptide repeat-binding sites accumulate also in plant mitochondria.
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spelling pubmed-37114532013-07-15 The pentatricopeptide repeat MTSF1 protein stabilizes the nad4 mRNA in Arabidopsis mitochondria Haïli, Nawel Arnal, Nadège Quadrado, Martine Amiar, Souad Tcherkez, Guillaume Dahan, Jennifer Briozzo, Pierre Colas des Francs-Small, Catherine Vrielynck, Nathalie Mireau, Hakim Nucleic Acids Res RNA Gene expression in plant mitochondria involves a complex collaboration of transcription initiation and termination, as well as subsequent mRNA processing to produce mature mRNAs. In this study, we describe the function of the Arabidopsis mitochondrial stability factor 1 (MTSF1) gene and show that it encodes a pentatricopeptide repeat protein essential for the 3′-processing of mitochondrial nad4 mRNA and its stability. The nad4 mRNA is highly destabilized in Arabidopsis mtsf1 mutant plants, which consequently accumulates low amounts of a truncated form of respiratory complex I. Biochemical and genetic analyses demonstrated that MTSF1 binds with high affinity to the last 20 nucleotides of nad4 mRNA. Our data support a model for MTSF1 functioning in which its association with the last nucleotides of the nad4 3′ untranslated region stabilizes nad4 mRNA. Additionally, strict conservation of the MTSF1-binding sites strongly suggests that the protective function of MTSF1 on nad4 mRNA is conserved in dicots. These results demonstrate that the mRNA stabilization process initially identified in plastids, whereby proteins bound to RNA extremities constitute barriers to exoribonuclease progression occur in plant mitochondria to protect and concomitantly define the 3′ end of mature mitochondrial mRNAs. Our study also reveals that short RNA molecules corresponding to pentatricopeptide repeat-binding sites accumulate also in plant mitochondria. Oxford University Press 2013-07 2013-05-08 /pmc/articles/PMC3711453/ /pubmed/23658225 http://dx.doi.org/10.1093/nar/gkt337 Text en © The Author(s) 2013. Published by Oxford University Press. http://creativecommons.org/licenses/by-nc/3.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle RNA
Haïli, Nawel
Arnal, Nadège
Quadrado, Martine
Amiar, Souad
Tcherkez, Guillaume
Dahan, Jennifer
Briozzo, Pierre
Colas des Francs-Small, Catherine
Vrielynck, Nathalie
Mireau, Hakim
The pentatricopeptide repeat MTSF1 protein stabilizes the nad4 mRNA in Arabidopsis mitochondria
title The pentatricopeptide repeat MTSF1 protein stabilizes the nad4 mRNA in Arabidopsis mitochondria
title_full The pentatricopeptide repeat MTSF1 protein stabilizes the nad4 mRNA in Arabidopsis mitochondria
title_fullStr The pentatricopeptide repeat MTSF1 protein stabilizes the nad4 mRNA in Arabidopsis mitochondria
title_full_unstemmed The pentatricopeptide repeat MTSF1 protein stabilizes the nad4 mRNA in Arabidopsis mitochondria
title_short The pentatricopeptide repeat MTSF1 protein stabilizes the nad4 mRNA in Arabidopsis mitochondria
title_sort pentatricopeptide repeat mtsf1 protein stabilizes the nad4 mrna in arabidopsis mitochondria
topic RNA
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3711453/
https://www.ncbi.nlm.nih.gov/pubmed/23658225
http://dx.doi.org/10.1093/nar/gkt337
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