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Cell-type-specific control of secondary cell wall formation by Musashi-type translational regulators in Arabidopsis

Deciphering the mechanism of secondary cell wall/SCW formation in plants is key to understanding their development and the molecular basis of biomass recalcitrance. Although transcriptional regulation is essential for SCW formation, little is known about the implication of post-transcriptional mecha...

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Autores principales: Kairouani, Alicia, Pontier, Dominique, Picart, Claire, Mounet, Fabien, Martinez, Yves, Le-Bot, Lucie, Fanuel, Mathieu, Hammann, Philippe, Belmudes, Lucid, Merret, Remy, Azevedo, Jacinthe, Carpentier, Marie-Christine, Gagliardi, Dominique, Couté, Yohann, Sibout, Richard, Bies-Etheve, Natacha, Lagrange, Thierry
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10541177/
https://www.ncbi.nlm.nih.gov/pubmed/37773033
http://dx.doi.org/10.7554/eLife.88207
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author Kairouani, Alicia
Pontier, Dominique
Picart, Claire
Mounet, Fabien
Martinez, Yves
Le-Bot, Lucie
Fanuel, Mathieu
Hammann, Philippe
Belmudes, Lucid
Merret, Remy
Azevedo, Jacinthe
Carpentier, Marie-Christine
Gagliardi, Dominique
Couté, Yohann
Sibout, Richard
Bies-Etheve, Natacha
Lagrange, Thierry
author_facet Kairouani, Alicia
Pontier, Dominique
Picart, Claire
Mounet, Fabien
Martinez, Yves
Le-Bot, Lucie
Fanuel, Mathieu
Hammann, Philippe
Belmudes, Lucid
Merret, Remy
Azevedo, Jacinthe
Carpentier, Marie-Christine
Gagliardi, Dominique
Couté, Yohann
Sibout, Richard
Bies-Etheve, Natacha
Lagrange, Thierry
author_sort Kairouani, Alicia
collection PubMed
description Deciphering the mechanism of secondary cell wall/SCW formation in plants is key to understanding their development and the molecular basis of biomass recalcitrance. Although transcriptional regulation is essential for SCW formation, little is known about the implication of post-transcriptional mechanisms in this process. Here we report that two bonafide RNA-binding proteins homologous to the animal translational regulator Musashi, MSIL2 and MSIL4, function redundantly to control SCW formation in Arabidopsis. MSIL2/4 interactomes are similar and enriched in proteins involved in mRNA binding and translational regulation. MSIL2/4 mutations alter SCW formation in the fibers, leading to a reduction in lignin deposition, and an increase of 4-O-glucuronoxylan methylation. In accordance, quantitative proteomics of stems reveal an overaccumulation of glucuronoxylan biosynthetic machinery, including GXM3, in the msil2/4 mutant stem. We showed that MSIL4 immunoprecipitates GXM mRNAs, suggesting a novel aspect of SCW regulation, linking post-transcriptional control to the regulation of SCW biosynthesis genes.
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spelling pubmed-105411772023-10-01 Cell-type-specific control of secondary cell wall formation by Musashi-type translational regulators in Arabidopsis Kairouani, Alicia Pontier, Dominique Picart, Claire Mounet, Fabien Martinez, Yves Le-Bot, Lucie Fanuel, Mathieu Hammann, Philippe Belmudes, Lucid Merret, Remy Azevedo, Jacinthe Carpentier, Marie-Christine Gagliardi, Dominique Couté, Yohann Sibout, Richard Bies-Etheve, Natacha Lagrange, Thierry eLife Plant Biology Deciphering the mechanism of secondary cell wall/SCW formation in plants is key to understanding their development and the molecular basis of biomass recalcitrance. Although transcriptional regulation is essential for SCW formation, little is known about the implication of post-transcriptional mechanisms in this process. Here we report that two bonafide RNA-binding proteins homologous to the animal translational regulator Musashi, MSIL2 and MSIL4, function redundantly to control SCW formation in Arabidopsis. MSIL2/4 interactomes are similar and enriched in proteins involved in mRNA binding and translational regulation. MSIL2/4 mutations alter SCW formation in the fibers, leading to a reduction in lignin deposition, and an increase of 4-O-glucuronoxylan methylation. In accordance, quantitative proteomics of stems reveal an overaccumulation of glucuronoxylan biosynthetic machinery, including GXM3, in the msil2/4 mutant stem. We showed that MSIL4 immunoprecipitates GXM mRNAs, suggesting a novel aspect of SCW regulation, linking post-transcriptional control to the regulation of SCW biosynthesis genes. eLife Sciences Publications, Ltd 2023-09-29 /pmc/articles/PMC10541177/ /pubmed/37773033 http://dx.doi.org/10.7554/eLife.88207 Text en © 2023, Kairouani, Pontier et al https://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Plant Biology
Kairouani, Alicia
Pontier, Dominique
Picart, Claire
Mounet, Fabien
Martinez, Yves
Le-Bot, Lucie
Fanuel, Mathieu
Hammann, Philippe
Belmudes, Lucid
Merret, Remy
Azevedo, Jacinthe
Carpentier, Marie-Christine
Gagliardi, Dominique
Couté, Yohann
Sibout, Richard
Bies-Etheve, Natacha
Lagrange, Thierry
Cell-type-specific control of secondary cell wall formation by Musashi-type translational regulators in Arabidopsis
title Cell-type-specific control of secondary cell wall formation by Musashi-type translational regulators in Arabidopsis
title_full Cell-type-specific control of secondary cell wall formation by Musashi-type translational regulators in Arabidopsis
title_fullStr Cell-type-specific control of secondary cell wall formation by Musashi-type translational regulators in Arabidopsis
title_full_unstemmed Cell-type-specific control of secondary cell wall formation by Musashi-type translational regulators in Arabidopsis
title_short Cell-type-specific control of secondary cell wall formation by Musashi-type translational regulators in Arabidopsis
title_sort cell-type-specific control of secondary cell wall formation by musashi-type translational regulators in arabidopsis
topic Plant Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10541177/
https://www.ncbi.nlm.nih.gov/pubmed/37773033
http://dx.doi.org/10.7554/eLife.88207
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