Cargando…

Systematic mapping of rRNA 2’-O methylation during frog development and involvement of the methyltransferase Fibrillarin in eye and craniofacial development in Xenopus laevis

Ribosomes are essential nanomachines responsible for protein production. Although ribosomes are present in every living cell, ribosome biogenesis dysfunction diseases, called ribosomopathies, impact particular tissues specifically. Here, we evaluate the importance of the box C/D snoRNA-associated ri...

Descripción completa

Detalles Bibliográficos
Autores principales: Delhermite, Jonathan, Tafforeau, Lionel, Sharma, Sunny, Marchand, Virginie, Wacheul, Ludivine, Lattuca, Ruben, Desiderio, Simon, Motorin, Yuri, Bellefroid, Eric, Lafontaine, Denis L. J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8797249/
https://www.ncbi.nlm.nih.gov/pubmed/35041640
http://dx.doi.org/10.1371/journal.pgen.1010012
_version_ 1784641505846099968
author Delhermite, Jonathan
Tafforeau, Lionel
Sharma, Sunny
Marchand, Virginie
Wacheul, Ludivine
Lattuca, Ruben
Desiderio, Simon
Motorin, Yuri
Bellefroid, Eric
Lafontaine, Denis L. J.
author_facet Delhermite, Jonathan
Tafforeau, Lionel
Sharma, Sunny
Marchand, Virginie
Wacheul, Ludivine
Lattuca, Ruben
Desiderio, Simon
Motorin, Yuri
Bellefroid, Eric
Lafontaine, Denis L. J.
author_sort Delhermite, Jonathan
collection PubMed
description Ribosomes are essential nanomachines responsible for protein production. Although ribosomes are present in every living cell, ribosome biogenesis dysfunction diseases, called ribosomopathies, impact particular tissues specifically. Here, we evaluate the importance of the box C/D snoRNA-associated ribosomal RNA methyltransferase fibrillarin (Fbl) in the early embryonic development of Xenopus laevis. We report that in developing embryos, the neural plate, neural crest cells (NCCs), and NCC derivatives are rich in fbl transcripts. Fbl knockdown leads to striking morphological defects affecting the eyes and craniofacial skeleton, due to lack of NCC survival caused by massive p53-dependent apoptosis. Fbl is required for efficient pre-rRNA processing and 18S rRNA production, which explains the early developmental defects. Using RiboMethSeq, we systematically reinvestigated ribosomal RNA 2’-O methylation in X. laevis, confirming all 89 previously mapped sites and identifying 15 novel putative positions in 18S and 28S rRNA. Twenty-three positions, including 10 of the new ones, were validated orthogonally by low dNTP primer extension. Bioinformatic screening of the X. laevis transcriptome revealed candidate box C/D snoRNAs for all methylated positions. Mapping of 2’-O methylation at six developmental stages in individual embryos indicated a trend towards reduced methylation at specific positions during development. We conclude that fibrillarin knockdown in early Xenopus embryos causes reduced production of functional ribosomal subunits, thus impairing NCC formation and migration.
format Online
Article
Text
id pubmed-8797249
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-87972492022-01-29 Systematic mapping of rRNA 2’-O methylation during frog development and involvement of the methyltransferase Fibrillarin in eye and craniofacial development in Xenopus laevis Delhermite, Jonathan Tafforeau, Lionel Sharma, Sunny Marchand, Virginie Wacheul, Ludivine Lattuca, Ruben Desiderio, Simon Motorin, Yuri Bellefroid, Eric Lafontaine, Denis L. J. PLoS Genet Research Article Ribosomes are essential nanomachines responsible for protein production. Although ribosomes are present in every living cell, ribosome biogenesis dysfunction diseases, called ribosomopathies, impact particular tissues specifically. Here, we evaluate the importance of the box C/D snoRNA-associated ribosomal RNA methyltransferase fibrillarin (Fbl) in the early embryonic development of Xenopus laevis. We report that in developing embryos, the neural plate, neural crest cells (NCCs), and NCC derivatives are rich in fbl transcripts. Fbl knockdown leads to striking morphological defects affecting the eyes and craniofacial skeleton, due to lack of NCC survival caused by massive p53-dependent apoptosis. Fbl is required for efficient pre-rRNA processing and 18S rRNA production, which explains the early developmental defects. Using RiboMethSeq, we systematically reinvestigated ribosomal RNA 2’-O methylation in X. laevis, confirming all 89 previously mapped sites and identifying 15 novel putative positions in 18S and 28S rRNA. Twenty-three positions, including 10 of the new ones, were validated orthogonally by low dNTP primer extension. Bioinformatic screening of the X. laevis transcriptome revealed candidate box C/D snoRNAs for all methylated positions. Mapping of 2’-O methylation at six developmental stages in individual embryos indicated a trend towards reduced methylation at specific positions during development. We conclude that fibrillarin knockdown in early Xenopus embryos causes reduced production of functional ribosomal subunits, thus impairing NCC formation and migration. Public Library of Science 2022-01-18 /pmc/articles/PMC8797249/ /pubmed/35041640 http://dx.doi.org/10.1371/journal.pgen.1010012 Text en © 2022 Delhermite et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Delhermite, Jonathan
Tafforeau, Lionel
Sharma, Sunny
Marchand, Virginie
Wacheul, Ludivine
Lattuca, Ruben
Desiderio, Simon
Motorin, Yuri
Bellefroid, Eric
Lafontaine, Denis L. J.
Systematic mapping of rRNA 2’-O methylation during frog development and involvement of the methyltransferase Fibrillarin in eye and craniofacial development in Xenopus laevis
title Systematic mapping of rRNA 2’-O methylation during frog development and involvement of the methyltransferase Fibrillarin in eye and craniofacial development in Xenopus laevis
title_full Systematic mapping of rRNA 2’-O methylation during frog development and involvement of the methyltransferase Fibrillarin in eye and craniofacial development in Xenopus laevis
title_fullStr Systematic mapping of rRNA 2’-O methylation during frog development and involvement of the methyltransferase Fibrillarin in eye and craniofacial development in Xenopus laevis
title_full_unstemmed Systematic mapping of rRNA 2’-O methylation during frog development and involvement of the methyltransferase Fibrillarin in eye and craniofacial development in Xenopus laevis
title_short Systematic mapping of rRNA 2’-O methylation during frog development and involvement of the methyltransferase Fibrillarin in eye and craniofacial development in Xenopus laevis
title_sort systematic mapping of rrna 2’-o methylation during frog development and involvement of the methyltransferase fibrillarin in eye and craniofacial development in xenopus laevis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8797249/
https://www.ncbi.nlm.nih.gov/pubmed/35041640
http://dx.doi.org/10.1371/journal.pgen.1010012
work_keys_str_mv AT delhermitejonathan systematicmappingofrrna2omethylationduringfrogdevelopmentandinvolvementofthemethyltransferasefibrillarinineyeandcraniofacialdevelopmentinxenopuslaevis
AT tafforeaulionel systematicmappingofrrna2omethylationduringfrogdevelopmentandinvolvementofthemethyltransferasefibrillarinineyeandcraniofacialdevelopmentinxenopuslaevis
AT sharmasunny systematicmappingofrrna2omethylationduringfrogdevelopmentandinvolvementofthemethyltransferasefibrillarinineyeandcraniofacialdevelopmentinxenopuslaevis
AT marchandvirginie systematicmappingofrrna2omethylationduringfrogdevelopmentandinvolvementofthemethyltransferasefibrillarinineyeandcraniofacialdevelopmentinxenopuslaevis
AT wacheulludivine systematicmappingofrrna2omethylationduringfrogdevelopmentandinvolvementofthemethyltransferasefibrillarinineyeandcraniofacialdevelopmentinxenopuslaevis
AT lattucaruben systematicmappingofrrna2omethylationduringfrogdevelopmentandinvolvementofthemethyltransferasefibrillarinineyeandcraniofacialdevelopmentinxenopuslaevis
AT desideriosimon systematicmappingofrrna2omethylationduringfrogdevelopmentandinvolvementofthemethyltransferasefibrillarinineyeandcraniofacialdevelopmentinxenopuslaevis
AT motorinyuri systematicmappingofrrna2omethylationduringfrogdevelopmentandinvolvementofthemethyltransferasefibrillarinineyeandcraniofacialdevelopmentinxenopuslaevis
AT bellefroideric systematicmappingofrrna2omethylationduringfrogdevelopmentandinvolvementofthemethyltransferasefibrillarinineyeandcraniofacialdevelopmentinxenopuslaevis
AT lafontainedenislj systematicmappingofrrna2omethylationduringfrogdevelopmentandinvolvementofthemethyltransferasefibrillarinineyeandcraniofacialdevelopmentinxenopuslaevis