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Interference with the Cannabinoid Receptor CB1R Results in Miswiring of GnRH3 and AgRP1 Axons in Zebrafish Embryos

The G protein-coupled cannabinoid receptors type 1 (CB1R) and type 2 (CB2R), and their endocannabinoid (eCBs) ligands, have been implicated in several aspects of brain wiring during development. Here we aim to assess whether interfering with CB1R affects development, neuritogenesis and pathfinding o...

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Autores principales: Zuccarini, Giulia, D’Atri, Ilaria, Cottone, Erika, Mackie, Ken, Shainer, Inbal, Gothilf, Yoav, Provero, Paolo, Bovolin, Patrizia, Merlo, Giorgio Roberto
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6982252/
https://www.ncbi.nlm.nih.gov/pubmed/31881740
http://dx.doi.org/10.3390/ijms21010168
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author Zuccarini, Giulia
D’Atri, Ilaria
Cottone, Erika
Mackie, Ken
Shainer, Inbal
Gothilf, Yoav
Provero, Paolo
Bovolin, Patrizia
Merlo, Giorgio Roberto
author_facet Zuccarini, Giulia
D’Atri, Ilaria
Cottone, Erika
Mackie, Ken
Shainer, Inbal
Gothilf, Yoav
Provero, Paolo
Bovolin, Patrizia
Merlo, Giorgio Roberto
author_sort Zuccarini, Giulia
collection PubMed
description The G protein-coupled cannabinoid receptors type 1 (CB1R) and type 2 (CB2R), and their endocannabinoid (eCBs) ligands, have been implicated in several aspects of brain wiring during development. Here we aim to assess whether interfering with CB1R affects development, neuritogenesis and pathfinding of GnRH and AgRP neurons, forebrain neurons that control respectively reproduction and appetite. We pharmacologically and genetically interfered with CB1R in zebrafish strains with fluorescently labeled GnRH3 and the AgRP1 neurons. By applying CB1R antagonists we observed a reduced number of GnRH3 neurons, fiber misrouting and altered fasciculation. Similar phenotypes were observed by CB1R knockdown. Interfering with CB1R also resulted in a reduced number, misrouting and poor fasciculation of the AgRP1 neuron’s axonal projections. Using a bioinformatic approach followed by qPCR validation, we have attempted to link CB1R functions with known guidance and fasciculation proteins. The search identified stathmin-2, a protein controlling microtubule dynamics, previously demonstrated to be coexpressed with CB1R and now shown to be downregulated upon interference with CB1R in zebrafish. Together, these results raise the likely possibility that embryonic exposure to low doses of CB1R-interfering compounds could impact on the development of the neuroendocrine systems controlling sexual maturation, reproduction and food intake.
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spelling pubmed-69822522020-02-07 Interference with the Cannabinoid Receptor CB1R Results in Miswiring of GnRH3 and AgRP1 Axons in Zebrafish Embryos Zuccarini, Giulia D’Atri, Ilaria Cottone, Erika Mackie, Ken Shainer, Inbal Gothilf, Yoav Provero, Paolo Bovolin, Patrizia Merlo, Giorgio Roberto Int J Mol Sci Article The G protein-coupled cannabinoid receptors type 1 (CB1R) and type 2 (CB2R), and their endocannabinoid (eCBs) ligands, have been implicated in several aspects of brain wiring during development. Here we aim to assess whether interfering with CB1R affects development, neuritogenesis and pathfinding of GnRH and AgRP neurons, forebrain neurons that control respectively reproduction and appetite. We pharmacologically and genetically interfered with CB1R in zebrafish strains with fluorescently labeled GnRH3 and the AgRP1 neurons. By applying CB1R antagonists we observed a reduced number of GnRH3 neurons, fiber misrouting and altered fasciculation. Similar phenotypes were observed by CB1R knockdown. Interfering with CB1R also resulted in a reduced number, misrouting and poor fasciculation of the AgRP1 neuron’s axonal projections. Using a bioinformatic approach followed by qPCR validation, we have attempted to link CB1R functions with known guidance and fasciculation proteins. The search identified stathmin-2, a protein controlling microtubule dynamics, previously demonstrated to be coexpressed with CB1R and now shown to be downregulated upon interference with CB1R in zebrafish. Together, these results raise the likely possibility that embryonic exposure to low doses of CB1R-interfering compounds could impact on the development of the neuroendocrine systems controlling sexual maturation, reproduction and food intake. MDPI 2019-12-25 /pmc/articles/PMC6982252/ /pubmed/31881740 http://dx.doi.org/10.3390/ijms21010168 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Zuccarini, Giulia
D’Atri, Ilaria
Cottone, Erika
Mackie, Ken
Shainer, Inbal
Gothilf, Yoav
Provero, Paolo
Bovolin, Patrizia
Merlo, Giorgio Roberto
Interference with the Cannabinoid Receptor CB1R Results in Miswiring of GnRH3 and AgRP1 Axons in Zebrafish Embryos
title Interference with the Cannabinoid Receptor CB1R Results in Miswiring of GnRH3 and AgRP1 Axons in Zebrafish Embryos
title_full Interference with the Cannabinoid Receptor CB1R Results in Miswiring of GnRH3 and AgRP1 Axons in Zebrafish Embryos
title_fullStr Interference with the Cannabinoid Receptor CB1R Results in Miswiring of GnRH3 and AgRP1 Axons in Zebrafish Embryos
title_full_unstemmed Interference with the Cannabinoid Receptor CB1R Results in Miswiring of GnRH3 and AgRP1 Axons in Zebrafish Embryos
title_short Interference with the Cannabinoid Receptor CB1R Results in Miswiring of GnRH3 and AgRP1 Axons in Zebrafish Embryos
title_sort interference with the cannabinoid receptor cb1r results in miswiring of gnrh3 and agrp1 axons in zebrafish embryos
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6982252/
https://www.ncbi.nlm.nih.gov/pubmed/31881740
http://dx.doi.org/10.3390/ijms21010168
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