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The Dlx5 and Foxg1 transcription factors, linked via miRNA-9 and -200, are required for the development of the olfactory and GnRH system
During neuronal development and maturation, microRNAs (miRs) play diverse functions ranging from early patterning, proliferation and commitment to differentiation, survival, homeostasis, activity and plasticity of more mature and adult neurons. The role of miRs in the differentiation of olfactory re...
Autores principales: | , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Academic Press
2015
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4604252/ https://www.ncbi.nlm.nih.gov/pubmed/25937343 http://dx.doi.org/10.1016/j.mcn.2015.04.007 |
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author | Garaffo, Giulia Conte, Daniele Provero, Paolo Tomaiuolo, Daniela Luo, Zheng Pinciroli, Patrizia Peano, Clelia D'Atri, Ilaria Gitton, Yorick Etzion, Talya Gothilf, Yoav Gays, Dafne Santoro, Massimo M. Merlo, Giorgio R. |
author_facet | Garaffo, Giulia Conte, Daniele Provero, Paolo Tomaiuolo, Daniela Luo, Zheng Pinciroli, Patrizia Peano, Clelia D'Atri, Ilaria Gitton, Yorick Etzion, Talya Gothilf, Yoav Gays, Dafne Santoro, Massimo M. Merlo, Giorgio R. |
author_sort | Garaffo, Giulia |
collection | PubMed |
description | During neuronal development and maturation, microRNAs (miRs) play diverse functions ranging from early patterning, proliferation and commitment to differentiation, survival, homeostasis, activity and plasticity of more mature and adult neurons. The role of miRs in the differentiation of olfactory receptor neurons (ORNs) is emerging from the conditional inactivation of Dicer in immature ORN, and the depletion of all mature miRs in this system. Here, we identify specific miRs involved in olfactory development, by focusing on mice null for Dlx5, a homeogene essential for both ORN differentiation and axon guidance and connectivity. Analysis of miR expression in Dlx5(−/−) olfactory epithelium pointed to reduced levels of miR-9, miR-376a and four miRs of the -200 class in the absence of Dlx5. To functionally examine the role of these miRs, we depleted miR-9 and miR-200 class in reporter zebrafish embryos and observed delayed ORN differentiation, altered axonal trajectory/targeting, and altered genesis and position of olfactory-associated GnRH neurons, i.e. a phenotype known as Kallmann syndrome in humans. miR-9 and miR-200-class negatively control Foxg1 mRNA, a fork-head transcription factor essential for development of the olfactory epithelium and of the forebrain, known to maintain progenitors in a stem state. Increased levels of z-foxg1 mRNA resulted in delayed ORN differentiation and altered axon trajectory, in zebrafish embryos. This work describes for the first time the role of specific miR (-9 and -200) in olfactory/GnRH development, and uncovers a Dlx5–Foxg1 regulation whose alteration affects receptor neuron differentiation, axonal targeting, GnRH neuron development, the hallmarks of the Kallmann syndrome. |
format | Online Article Text |
id | pubmed-4604252 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2015 |
publisher | Academic Press |
record_format | MEDLINE/PubMed |
spelling | pubmed-46042522015-10-28 The Dlx5 and Foxg1 transcription factors, linked via miRNA-9 and -200, are required for the development of the olfactory and GnRH system Garaffo, Giulia Conte, Daniele Provero, Paolo Tomaiuolo, Daniela Luo, Zheng Pinciroli, Patrizia Peano, Clelia D'Atri, Ilaria Gitton, Yorick Etzion, Talya Gothilf, Yoav Gays, Dafne Santoro, Massimo M. Merlo, Giorgio R. Mol Cell Neurosci Article During neuronal development and maturation, microRNAs (miRs) play diverse functions ranging from early patterning, proliferation and commitment to differentiation, survival, homeostasis, activity and plasticity of more mature and adult neurons. The role of miRs in the differentiation of olfactory receptor neurons (ORNs) is emerging from the conditional inactivation of Dicer in immature ORN, and the depletion of all mature miRs in this system. Here, we identify specific miRs involved in olfactory development, by focusing on mice null for Dlx5, a homeogene essential for both ORN differentiation and axon guidance and connectivity. Analysis of miR expression in Dlx5(−/−) olfactory epithelium pointed to reduced levels of miR-9, miR-376a and four miRs of the -200 class in the absence of Dlx5. To functionally examine the role of these miRs, we depleted miR-9 and miR-200 class in reporter zebrafish embryos and observed delayed ORN differentiation, altered axonal trajectory/targeting, and altered genesis and position of olfactory-associated GnRH neurons, i.e. a phenotype known as Kallmann syndrome in humans. miR-9 and miR-200-class negatively control Foxg1 mRNA, a fork-head transcription factor essential for development of the olfactory epithelium and of the forebrain, known to maintain progenitors in a stem state. Increased levels of z-foxg1 mRNA resulted in delayed ORN differentiation and altered axon trajectory, in zebrafish embryos. This work describes for the first time the role of specific miR (-9 and -200) in olfactory/GnRH development, and uncovers a Dlx5–Foxg1 regulation whose alteration affects receptor neuron differentiation, axonal targeting, GnRH neuron development, the hallmarks of the Kallmann syndrome. Academic Press 2015-09 /pmc/articles/PMC4604252/ /pubmed/25937343 http://dx.doi.org/10.1016/j.mcn.2015.04.007 Text en © 2015 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/). |
spellingShingle | Article Garaffo, Giulia Conte, Daniele Provero, Paolo Tomaiuolo, Daniela Luo, Zheng Pinciroli, Patrizia Peano, Clelia D'Atri, Ilaria Gitton, Yorick Etzion, Talya Gothilf, Yoav Gays, Dafne Santoro, Massimo M. Merlo, Giorgio R. The Dlx5 and Foxg1 transcription factors, linked via miRNA-9 and -200, are required for the development of the olfactory and GnRH system |
title | The Dlx5 and Foxg1 transcription factors, linked via miRNA-9 and -200, are required for the development of the olfactory and GnRH system |
title_full | The Dlx5 and Foxg1 transcription factors, linked via miRNA-9 and -200, are required for the development of the olfactory and GnRH system |
title_fullStr | The Dlx5 and Foxg1 transcription factors, linked via miRNA-9 and -200, are required for the development of the olfactory and GnRH system |
title_full_unstemmed | The Dlx5 and Foxg1 transcription factors, linked via miRNA-9 and -200, are required for the development of the olfactory and GnRH system |
title_short | The Dlx5 and Foxg1 transcription factors, linked via miRNA-9 and -200, are required for the development of the olfactory and GnRH system |
title_sort | dlx5 and foxg1 transcription factors, linked via mirna-9 and -200, are required for the development of the olfactory and gnrh system |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4604252/ https://www.ncbi.nlm.nih.gov/pubmed/25937343 http://dx.doi.org/10.1016/j.mcn.2015.04.007 |
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