Cargando…

Repression of Irs2 by let‐7 miRNAs is essential for homeostasis of the telencephalic neuroepithelium

Structural integrity and cellular homeostasis of the embryonic stem cell niche are critical for normal tissue development. In the telencephalic neuroepithelium, this is controlled in part by cell adhesion molecules and regulators of progenitor cell lineage, but the specific orchestration of these pr...

Descripción completa

Detalles Bibliográficos
Autores principales: Fernández, Virginia, Martínez‐Martínez, Maria Ángeles, Prieto‐Colomina, Anna, Cárdenas, Adrián, Soler, Rafael, Dori, Martina, Tomasello, Ugo, Nomura, Yuki, López‐Atalaya, José P, Calegari, Federico, Borrell, Víctor
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7604626/
https://www.ncbi.nlm.nih.gov/pubmed/32985705
http://dx.doi.org/10.15252/embj.2020105479
_version_ 1783604178344476672
author Fernández, Virginia
Martínez‐Martínez, Maria Ángeles
Prieto‐Colomina, Anna
Cárdenas, Adrián
Soler, Rafael
Dori, Martina
Tomasello, Ugo
Nomura, Yuki
López‐Atalaya, José P
Calegari, Federico
Borrell, Víctor
author_facet Fernández, Virginia
Martínez‐Martínez, Maria Ángeles
Prieto‐Colomina, Anna
Cárdenas, Adrián
Soler, Rafael
Dori, Martina
Tomasello, Ugo
Nomura, Yuki
López‐Atalaya, José P
Calegari, Federico
Borrell, Víctor
author_sort Fernández, Virginia
collection PubMed
description Structural integrity and cellular homeostasis of the embryonic stem cell niche are critical for normal tissue development. In the telencephalic neuroepithelium, this is controlled in part by cell adhesion molecules and regulators of progenitor cell lineage, but the specific orchestration of these processes remains unknown. Here, we studied the role of microRNAs in the embryonic telencephalon as key regulators of gene expression. By using the early recombiner Rx‐Cre mouse, we identify novel and critical roles of miRNAs in early brain development, demonstrating they are essential to preserve the cellular homeostasis and structural integrity of the telencephalic neuroepithelium. We show that Rx‐Cre;Dicer (F/F) mouse embryos have a severe disruption of the telencephalic apical junction belt, followed by invagination of the ventricular surface and formation of hyperproliferative rosettes. Transcriptome analyses and functional experiments in vivo show that these defects result from upregulation of Irs2 upon loss of let‐7 miRNAs in an apoptosis‐independent manner. Our results reveal an unprecedented relevance of miRNAs in early forebrain development, with potential mechanistic implications in pediatric brain cancer.
format Online
Article
Text
id pubmed-7604626
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-76046262020-11-05 Repression of Irs2 by let‐7 miRNAs is essential for homeostasis of the telencephalic neuroepithelium Fernández, Virginia Martínez‐Martínez, Maria Ángeles Prieto‐Colomina, Anna Cárdenas, Adrián Soler, Rafael Dori, Martina Tomasello, Ugo Nomura, Yuki López‐Atalaya, José P Calegari, Federico Borrell, Víctor EMBO J Articles Structural integrity and cellular homeostasis of the embryonic stem cell niche are critical for normal tissue development. In the telencephalic neuroepithelium, this is controlled in part by cell adhesion molecules and regulators of progenitor cell lineage, but the specific orchestration of these processes remains unknown. Here, we studied the role of microRNAs in the embryonic telencephalon as key regulators of gene expression. By using the early recombiner Rx‐Cre mouse, we identify novel and critical roles of miRNAs in early brain development, demonstrating they are essential to preserve the cellular homeostasis and structural integrity of the telencephalic neuroepithelium. We show that Rx‐Cre;Dicer (F/F) mouse embryos have a severe disruption of the telencephalic apical junction belt, followed by invagination of the ventricular surface and formation of hyperproliferative rosettes. Transcriptome analyses and functional experiments in vivo show that these defects result from upregulation of Irs2 upon loss of let‐7 miRNAs in an apoptosis‐independent manner. Our results reveal an unprecedented relevance of miRNAs in early forebrain development, with potential mechanistic implications in pediatric brain cancer. John Wiley and Sons Inc. 2020-09-28 2020-11-02 /pmc/articles/PMC7604626/ /pubmed/32985705 http://dx.doi.org/10.15252/embj.2020105479 Text en © 2020 The Authors. Published under the terms of the CC BY 4.0 license This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Articles
Fernández, Virginia
Martínez‐Martínez, Maria Ángeles
Prieto‐Colomina, Anna
Cárdenas, Adrián
Soler, Rafael
Dori, Martina
Tomasello, Ugo
Nomura, Yuki
López‐Atalaya, José P
Calegari, Federico
Borrell, Víctor
Repression of Irs2 by let‐7 miRNAs is essential for homeostasis of the telencephalic neuroepithelium
title Repression of Irs2 by let‐7 miRNAs is essential for homeostasis of the telencephalic neuroepithelium
title_full Repression of Irs2 by let‐7 miRNAs is essential for homeostasis of the telencephalic neuroepithelium
title_fullStr Repression of Irs2 by let‐7 miRNAs is essential for homeostasis of the telencephalic neuroepithelium
title_full_unstemmed Repression of Irs2 by let‐7 miRNAs is essential for homeostasis of the telencephalic neuroepithelium
title_short Repression of Irs2 by let‐7 miRNAs is essential for homeostasis of the telencephalic neuroepithelium
title_sort repression of irs2 by let‐7 mirnas is essential for homeostasis of the telencephalic neuroepithelium
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7604626/
https://www.ncbi.nlm.nih.gov/pubmed/32985705
http://dx.doi.org/10.15252/embj.2020105479
work_keys_str_mv AT fernandezvirginia repressionofirs2bylet7mirnasisessentialforhomeostasisofthetelencephalicneuroepithelium
AT martinezmartinezmariaangeles repressionofirs2bylet7mirnasisessentialforhomeostasisofthetelencephalicneuroepithelium
AT prietocolominaanna repressionofirs2bylet7mirnasisessentialforhomeostasisofthetelencephalicneuroepithelium
AT cardenasadrian repressionofirs2bylet7mirnasisessentialforhomeostasisofthetelencephalicneuroepithelium
AT solerrafael repressionofirs2bylet7mirnasisessentialforhomeostasisofthetelencephalicneuroepithelium
AT dorimartina repressionofirs2bylet7mirnasisessentialforhomeostasisofthetelencephalicneuroepithelium
AT tomasellougo repressionofirs2bylet7mirnasisessentialforhomeostasisofthetelencephalicneuroepithelium
AT nomurayuki repressionofirs2bylet7mirnasisessentialforhomeostasisofthetelencephalicneuroepithelium
AT lopezatalayajosep repressionofirs2bylet7mirnasisessentialforhomeostasisofthetelencephalicneuroepithelium
AT calegarifederico repressionofirs2bylet7mirnasisessentialforhomeostasisofthetelencephalicneuroepithelium
AT borrellvictor repressionofirs2bylet7mirnasisessentialforhomeostasisofthetelencephalicneuroepithelium