Cargando…

The miRNA biogenesis pathway prevents inappropriate expression of injury response genes in developing and adult Schwann cells

Proper function of the nervous system depends on myelination. In peripheral nerves, Schwann cells (SCs) myelinate axons and the miRNA biogenesis pathway is required for developmental myelination and myelin maintenance. However, regulatory roles of this pathway at different stages of myelination are...

Descripción completa

Detalles Bibliográficos
Autores principales: Gökbuget, Deniz, Pereira, Jorge A., Opitz, Lennart, Christe, Dominik, Kessler, Tobias, Marchais, Antonin, Suter, Ueli
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley & Sons, Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6585637/
https://www.ncbi.nlm.nih.gov/pubmed/30295958
http://dx.doi.org/10.1002/glia.23516
_version_ 1783428739466526720
author Gökbuget, Deniz
Pereira, Jorge A.
Opitz, Lennart
Christe, Dominik
Kessler, Tobias
Marchais, Antonin
Suter, Ueli
author_facet Gökbuget, Deniz
Pereira, Jorge A.
Opitz, Lennart
Christe, Dominik
Kessler, Tobias
Marchais, Antonin
Suter, Ueli
author_sort Gökbuget, Deniz
collection PubMed
description Proper function of the nervous system depends on myelination. In peripheral nerves, Schwann cells (SCs) myelinate axons and the miRNA biogenesis pathway is required for developmental myelination and myelin maintenance. However, regulatory roles of this pathway at different stages of myelination are only partially understood. We addressed the requirement of the core miRNA biogenesis pathway components Dgcr8, Drosha, and Dicer in developing and adult SCs using mouse mutants with a comparative genetics and transcriptomics approach. We found that the microprocessor components Dgcr8 and Drosha are crucial for axonal radial sorting and to establish correct SC numbers upon myelination. Transcriptome analyses revealed a requirement of the microprocessor to prevent aberrantly increased expression of injury‐response genes. Those genes are predicted targets of abundant miRNAs in sciatic nerves (SNs) during developmental myelination. In agreement, Dgcr8 and Dicer are required for proper maintenance of the myelinated SC state, where abundant miRNAs in adult SNs are predicted to target injury‐response genes. We conclude that the miRNA biogenesis pathway in SCs is crucial for preventing inappropriate activity of injury‐response genes in developing and adult SCs.
format Online
Article
Text
id pubmed-6585637
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher John Wiley & Sons, Inc.
record_format MEDLINE/PubMed
spelling pubmed-65856372019-06-27 The miRNA biogenesis pathway prevents inappropriate expression of injury response genes in developing and adult Schwann cells Gökbuget, Deniz Pereira, Jorge A. Opitz, Lennart Christe, Dominik Kessler, Tobias Marchais, Antonin Suter, Ueli Glia Research Articles Proper function of the nervous system depends on myelination. In peripheral nerves, Schwann cells (SCs) myelinate axons and the miRNA biogenesis pathway is required for developmental myelination and myelin maintenance. However, regulatory roles of this pathway at different stages of myelination are only partially understood. We addressed the requirement of the core miRNA biogenesis pathway components Dgcr8, Drosha, and Dicer in developing and adult SCs using mouse mutants with a comparative genetics and transcriptomics approach. We found that the microprocessor components Dgcr8 and Drosha are crucial for axonal radial sorting and to establish correct SC numbers upon myelination. Transcriptome analyses revealed a requirement of the microprocessor to prevent aberrantly increased expression of injury‐response genes. Those genes are predicted targets of abundant miRNAs in sciatic nerves (SNs) during developmental myelination. In agreement, Dgcr8 and Dicer are required for proper maintenance of the myelinated SC state, where abundant miRNAs in adult SNs are predicted to target injury‐response genes. We conclude that the miRNA biogenesis pathway in SCs is crucial for preventing inappropriate activity of injury‐response genes in developing and adult SCs. John Wiley & Sons, Inc. 2018-10-08 2018-12 /pmc/articles/PMC6585637/ /pubmed/30295958 http://dx.doi.org/10.1002/glia.23516 Text en © 2018 The Authors. Glia published by Wiley Periodicals, Inc. 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 Research Articles
Gökbuget, Deniz
Pereira, Jorge A.
Opitz, Lennart
Christe, Dominik
Kessler, Tobias
Marchais, Antonin
Suter, Ueli
The miRNA biogenesis pathway prevents inappropriate expression of injury response genes in developing and adult Schwann cells
title The miRNA biogenesis pathway prevents inappropriate expression of injury response genes in developing and adult Schwann cells
title_full The miRNA biogenesis pathway prevents inappropriate expression of injury response genes in developing and adult Schwann cells
title_fullStr The miRNA biogenesis pathway prevents inappropriate expression of injury response genes in developing and adult Schwann cells
title_full_unstemmed The miRNA biogenesis pathway prevents inappropriate expression of injury response genes in developing and adult Schwann cells
title_short The miRNA biogenesis pathway prevents inappropriate expression of injury response genes in developing and adult Schwann cells
title_sort mirna biogenesis pathway prevents inappropriate expression of injury response genes in developing and adult schwann cells
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6585637/
https://www.ncbi.nlm.nih.gov/pubmed/30295958
http://dx.doi.org/10.1002/glia.23516
work_keys_str_mv AT gokbugetdeniz themirnabiogenesispathwaypreventsinappropriateexpressionofinjuryresponsegenesindevelopingandadultschwanncells
AT pereirajorgea themirnabiogenesispathwaypreventsinappropriateexpressionofinjuryresponsegenesindevelopingandadultschwanncells
AT opitzlennart themirnabiogenesispathwaypreventsinappropriateexpressionofinjuryresponsegenesindevelopingandadultschwanncells
AT christedominik themirnabiogenesispathwaypreventsinappropriateexpressionofinjuryresponsegenesindevelopingandadultschwanncells
AT kesslertobias themirnabiogenesispathwaypreventsinappropriateexpressionofinjuryresponsegenesindevelopingandadultschwanncells
AT marchaisantonin themirnabiogenesispathwaypreventsinappropriateexpressionofinjuryresponsegenesindevelopingandadultschwanncells
AT suterueli themirnabiogenesispathwaypreventsinappropriateexpressionofinjuryresponsegenesindevelopingandadultschwanncells
AT gokbugetdeniz mirnabiogenesispathwaypreventsinappropriateexpressionofinjuryresponsegenesindevelopingandadultschwanncells
AT pereirajorgea mirnabiogenesispathwaypreventsinappropriateexpressionofinjuryresponsegenesindevelopingandadultschwanncells
AT opitzlennart mirnabiogenesispathwaypreventsinappropriateexpressionofinjuryresponsegenesindevelopingandadultschwanncells
AT christedominik mirnabiogenesispathwaypreventsinappropriateexpressionofinjuryresponsegenesindevelopingandadultschwanncells
AT kesslertobias mirnabiogenesispathwaypreventsinappropriateexpressionofinjuryresponsegenesindevelopingandadultschwanncells
AT marchaisantonin mirnabiogenesispathwaypreventsinappropriateexpressionofinjuryresponsegenesindevelopingandadultschwanncells
AT suterueli mirnabiogenesispathwaypreventsinappropriateexpressionofinjuryresponsegenesindevelopingandadultschwanncells