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The X-linked splicing regulator MBNL3 has been co-opted to restrict placental growth in eutherians

Understanding the regulatory interactions that control gene expression during the development of novel tissues is a key goal of evolutionary developmental biology. Here, we show that Mbnl3 has undergone a striking process of evolutionary specialization in eutherian mammals resulting in the emergence...

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Autores principales: Spruce, Thomas, Plass, Mireya, Gohr, André, Ray, Debashish, Martínez de Lagrán, María, Rot, Gregor, Nóvoa, Ana, Burguera, Demian, Permanyer, Jon, Miret, Marta, Zheng, Hong, Swanson, Maurice S., Morris, Quaid, Mallo, Moises, Dierssen, Mara, Hughes, Timothy R., Pernaute, Barbara, Irimia, Manuel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9084524/
https://www.ncbi.nlm.nih.gov/pubmed/35476669
http://dx.doi.org/10.1371/journal.pbio.3001615
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author Spruce, Thomas
Plass, Mireya
Gohr, André
Ray, Debashish
Martínez de Lagrán, María
Rot, Gregor
Nóvoa, Ana
Burguera, Demian
Permanyer, Jon
Miret, Marta
Zheng, Hong
Swanson, Maurice S.
Morris, Quaid
Mallo, Moises
Dierssen, Mara
Hughes, Timothy R.
Pernaute, Barbara
Irimia, Manuel
author_facet Spruce, Thomas
Plass, Mireya
Gohr, André
Ray, Debashish
Martínez de Lagrán, María
Rot, Gregor
Nóvoa, Ana
Burguera, Demian
Permanyer, Jon
Miret, Marta
Zheng, Hong
Swanson, Maurice S.
Morris, Quaid
Mallo, Moises
Dierssen, Mara
Hughes, Timothy R.
Pernaute, Barbara
Irimia, Manuel
author_sort Spruce, Thomas
collection PubMed
description Understanding the regulatory interactions that control gene expression during the development of novel tissues is a key goal of evolutionary developmental biology. Here, we show that Mbnl3 has undergone a striking process of evolutionary specialization in eutherian mammals resulting in the emergence of a novel placental function for the gene. Mbnl3 belongs to a family of RNA-binding proteins whose members regulate multiple aspects of RNA metabolism. We find that, in eutherians, while both Mbnl3 and its paralog Mbnl2 are strongly expressed in placenta, Mbnl3 expression has been lost from nonplacental tissues in association with the evolution of a novel promoter. Moreover, Mbnl3 has undergone accelerated protein sequence evolution leading to changes in its RNA-binding specificities and cellular localization. While Mbnl2 and Mbnl3 share partially redundant roles in regulating alternative splicing, polyadenylation site usage and, in turn, placenta maturation, Mbnl3 has also acquired novel biological functions. Specifically, Mbnl3 knockout (M3KO) alone results in increased placental growth associated with higher Myc expression. Furthermore, Mbnl3 loss increases fetal resource allocation during limiting conditions, suggesting that location of Mbnl3 on the X chromosome has led to its role in limiting placental growth, favoring the maternal side of the parental genetic conflict.
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spelling pubmed-90845242022-05-10 The X-linked splicing regulator MBNL3 has been co-opted to restrict placental growth in eutherians Spruce, Thomas Plass, Mireya Gohr, André Ray, Debashish Martínez de Lagrán, María Rot, Gregor Nóvoa, Ana Burguera, Demian Permanyer, Jon Miret, Marta Zheng, Hong Swanson, Maurice S. Morris, Quaid Mallo, Moises Dierssen, Mara Hughes, Timothy R. Pernaute, Barbara Irimia, Manuel PLoS Biol Discovery Report Understanding the regulatory interactions that control gene expression during the development of novel tissues is a key goal of evolutionary developmental biology. Here, we show that Mbnl3 has undergone a striking process of evolutionary specialization in eutherian mammals resulting in the emergence of a novel placental function for the gene. Mbnl3 belongs to a family of RNA-binding proteins whose members regulate multiple aspects of RNA metabolism. We find that, in eutherians, while both Mbnl3 and its paralog Mbnl2 are strongly expressed in placenta, Mbnl3 expression has been lost from nonplacental tissues in association with the evolution of a novel promoter. Moreover, Mbnl3 has undergone accelerated protein sequence evolution leading to changes in its RNA-binding specificities and cellular localization. While Mbnl2 and Mbnl3 share partially redundant roles in regulating alternative splicing, polyadenylation site usage and, in turn, placenta maturation, Mbnl3 has also acquired novel biological functions. Specifically, Mbnl3 knockout (M3KO) alone results in increased placental growth associated with higher Myc expression. Furthermore, Mbnl3 loss increases fetal resource allocation during limiting conditions, suggesting that location of Mbnl3 on the X chromosome has led to its role in limiting placental growth, favoring the maternal side of the parental genetic conflict. Public Library of Science 2022-04-27 /pmc/articles/PMC9084524/ /pubmed/35476669 http://dx.doi.org/10.1371/journal.pbio.3001615 Text en © 2022 Spruce 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 Discovery Report
Spruce, Thomas
Plass, Mireya
Gohr, André
Ray, Debashish
Martínez de Lagrán, María
Rot, Gregor
Nóvoa, Ana
Burguera, Demian
Permanyer, Jon
Miret, Marta
Zheng, Hong
Swanson, Maurice S.
Morris, Quaid
Mallo, Moises
Dierssen, Mara
Hughes, Timothy R.
Pernaute, Barbara
Irimia, Manuel
The X-linked splicing regulator MBNL3 has been co-opted to restrict placental growth in eutherians
title The X-linked splicing regulator MBNL3 has been co-opted to restrict placental growth in eutherians
title_full The X-linked splicing regulator MBNL3 has been co-opted to restrict placental growth in eutherians
title_fullStr The X-linked splicing regulator MBNL3 has been co-opted to restrict placental growth in eutherians
title_full_unstemmed The X-linked splicing regulator MBNL3 has been co-opted to restrict placental growth in eutherians
title_short The X-linked splicing regulator MBNL3 has been co-opted to restrict placental growth in eutherians
title_sort x-linked splicing regulator mbnl3 has been co-opted to restrict placental growth in eutherians
topic Discovery Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9084524/
https://www.ncbi.nlm.nih.gov/pubmed/35476669
http://dx.doi.org/10.1371/journal.pbio.3001615
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