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MISF2 Encodes an Essential Mitochondrial Splicing Cofactor Required for nad2 mRNA Processing and Embryo Development in Arabidopsis thaliana

Mitochondria play key roles in cellular energy metabolism in eukaryotes. Mitochondria of most organisms contain their own genome and specific transcription and translation machineries. The expression of angiosperm mtDNA involves extensive RNA-processing steps, such as RNA trimming, editing, and the...

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Autores principales: Nguyen, Tan-Trung, Best, Corinne, Shevtsov, Sofia, Zmudjak, Michal, Quadrado, Martine, Mizrahi, Ron, Zer, Hagit, Mireau, Hakim, Ostersetzer-Biran, Oren
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8910670/
https://www.ncbi.nlm.nih.gov/pubmed/35269810
http://dx.doi.org/10.3390/ijms23052670
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author Nguyen, Tan-Trung
Best, Corinne
Shevtsov, Sofia
Zmudjak, Michal
Quadrado, Martine
Mizrahi, Ron
Zer, Hagit
Mireau, Hakim
Ostersetzer-Biran, Oren
author_facet Nguyen, Tan-Trung
Best, Corinne
Shevtsov, Sofia
Zmudjak, Michal
Quadrado, Martine
Mizrahi, Ron
Zer, Hagit
Mireau, Hakim
Ostersetzer-Biran, Oren
author_sort Nguyen, Tan-Trung
collection PubMed
description Mitochondria play key roles in cellular energy metabolism in eukaryotes. Mitochondria of most organisms contain their own genome and specific transcription and translation machineries. The expression of angiosperm mtDNA involves extensive RNA-processing steps, such as RNA trimming, editing, and the splicing of numerous group II-type introns. Pentatricopeptide repeat (PPR) proteins are key players in plant organelle gene expression and RNA metabolism. In the present analysis, we reveal the function of the MITOCHONDRIAL SPLICING FACTOR 2 gene (MISF2, AT3G22670) and show that it encodes a mitochondria-localized PPR protein that is crucial for early embryo development in Arabidopsis. Molecular characterization of embryo-rescued misf2 plantlets indicates that the splicing of nad2 intron 1, and thus respiratory complex I biogenesis, are strongly compromised. Moreover, the molecular function seems conserved between MISF2 protein in Arabidopsis and its orthologous gene (EMP10) in maize, suggesting that the ancestor of MISF2/EMP10 was recruited to function in nad2 processing before the monocot–dicot divergence ~200 million years ago. These data provide new insights into the function of nuclear-encoded factors in mitochondrial gene expression and respiratory chain biogenesis during plant embryo development.
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spelling pubmed-89106702022-03-11 MISF2 Encodes an Essential Mitochondrial Splicing Cofactor Required for nad2 mRNA Processing and Embryo Development in Arabidopsis thaliana Nguyen, Tan-Trung Best, Corinne Shevtsov, Sofia Zmudjak, Michal Quadrado, Martine Mizrahi, Ron Zer, Hagit Mireau, Hakim Ostersetzer-Biran, Oren Int J Mol Sci Article Mitochondria play key roles in cellular energy metabolism in eukaryotes. Mitochondria of most organisms contain their own genome and specific transcription and translation machineries. The expression of angiosperm mtDNA involves extensive RNA-processing steps, such as RNA trimming, editing, and the splicing of numerous group II-type introns. Pentatricopeptide repeat (PPR) proteins are key players in plant organelle gene expression and RNA metabolism. In the present analysis, we reveal the function of the MITOCHONDRIAL SPLICING FACTOR 2 gene (MISF2, AT3G22670) and show that it encodes a mitochondria-localized PPR protein that is crucial for early embryo development in Arabidopsis. Molecular characterization of embryo-rescued misf2 plantlets indicates that the splicing of nad2 intron 1, and thus respiratory complex I biogenesis, are strongly compromised. Moreover, the molecular function seems conserved between MISF2 protein in Arabidopsis and its orthologous gene (EMP10) in maize, suggesting that the ancestor of MISF2/EMP10 was recruited to function in nad2 processing before the monocot–dicot divergence ~200 million years ago. These data provide new insights into the function of nuclear-encoded factors in mitochondrial gene expression and respiratory chain biogenesis during plant embryo development. MDPI 2022-02-28 /pmc/articles/PMC8910670/ /pubmed/35269810 http://dx.doi.org/10.3390/ijms23052670 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Nguyen, Tan-Trung
Best, Corinne
Shevtsov, Sofia
Zmudjak, Michal
Quadrado, Martine
Mizrahi, Ron
Zer, Hagit
Mireau, Hakim
Ostersetzer-Biran, Oren
MISF2 Encodes an Essential Mitochondrial Splicing Cofactor Required for nad2 mRNA Processing and Embryo Development in Arabidopsis thaliana
title MISF2 Encodes an Essential Mitochondrial Splicing Cofactor Required for nad2 mRNA Processing and Embryo Development in Arabidopsis thaliana
title_full MISF2 Encodes an Essential Mitochondrial Splicing Cofactor Required for nad2 mRNA Processing and Embryo Development in Arabidopsis thaliana
title_fullStr MISF2 Encodes an Essential Mitochondrial Splicing Cofactor Required for nad2 mRNA Processing and Embryo Development in Arabidopsis thaliana
title_full_unstemmed MISF2 Encodes an Essential Mitochondrial Splicing Cofactor Required for nad2 mRNA Processing and Embryo Development in Arabidopsis thaliana
title_short MISF2 Encodes an Essential Mitochondrial Splicing Cofactor Required for nad2 mRNA Processing and Embryo Development in Arabidopsis thaliana
title_sort misf2 encodes an essential mitochondrial splicing cofactor required for nad2 mrna processing and embryo development in arabidopsis thaliana
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8910670/
https://www.ncbi.nlm.nih.gov/pubmed/35269810
http://dx.doi.org/10.3390/ijms23052670
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