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Floor plate-derived netrin-1 is dispensable for commissural axon guidance

Netrin-1 is an evolutionarily conserved secreted extracellular matrix protein discovered using genetic and biochemical screens for its role in axon guidance at the central nervous system (CNS) midline1,2. Netrin-1 is expressed by cells localized at CNS midline, such as the floor plate in vertebrate...

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Autores principales: Dominici, Chloé, Moreno-Bravo, Juan Antonio, Puiggros, Sergi Roig, Rappeneau, Quentin, Rama, Nicolas, Vieugue, Pauline, Bernet, Agnes, Mehlen, Patrick, Chédotal, Alain
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5438598/
https://www.ncbi.nlm.nih.gov/pubmed/28445456
http://dx.doi.org/10.1038/nature22331
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author Dominici, Chloé
Moreno-Bravo, Juan Antonio
Puiggros, Sergi Roig
Rappeneau, Quentin
Rama, Nicolas
Vieugue, Pauline
Bernet, Agnes
Mehlen, Patrick
Chédotal, Alain
author_facet Dominici, Chloé
Moreno-Bravo, Juan Antonio
Puiggros, Sergi Roig
Rappeneau, Quentin
Rama, Nicolas
Vieugue, Pauline
Bernet, Agnes
Mehlen, Patrick
Chédotal, Alain
author_sort Dominici, Chloé
collection PubMed
description Netrin-1 is an evolutionarily conserved secreted extracellular matrix protein discovered using genetic and biochemical screens for its role in axon guidance at the central nervous system (CNS) midline1,2. Netrin-1 is expressed by cells localized at CNS midline, such as the floor plate in vertebrate embryos1,3. Growth cone turning assays and 3D gel diffusion assays showed that netrin-1 can attract commissural axons2,4–6. Loss-of-function experiments further demonstrated that commissural axon extension to the midline is severely impaired in absence of netrin-13,7–9. Together these data support a model in which commissural axons are attracted by a netrin-1 gradient diffusing from the midline. Here, we selectively ablated netrin-1 expression in floor plate cells using a Netrin-1 conditional mouse line. We found that hindbrain and spinal cord commissural axons develop normally in absence of floor plate-derived netrin-1. Furthermore, we show that netrin-1 is highly expressed by cells in the ventricular zone with the potential to release it at the pial surface where it binds to commissural axons. Importantly, netrin-1 deletion from the ventricular zone phenocopies commissural axon guidance defects previously described in Netrin-1 knockout mice. These results show that the classical textbook view that attraction of commissural axons is mediated by a gradient of floor plate-derived netrin-1 is inaccurate and that netrin-1 primarily acts locally by promoting growth cone adhesion.
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spelling pubmed-54385982017-10-26 Floor plate-derived netrin-1 is dispensable for commissural axon guidance Dominici, Chloé Moreno-Bravo, Juan Antonio Puiggros, Sergi Roig Rappeneau, Quentin Rama, Nicolas Vieugue, Pauline Bernet, Agnes Mehlen, Patrick Chédotal, Alain Nature Article Netrin-1 is an evolutionarily conserved secreted extracellular matrix protein discovered using genetic and biochemical screens for its role in axon guidance at the central nervous system (CNS) midline1,2. Netrin-1 is expressed by cells localized at CNS midline, such as the floor plate in vertebrate embryos1,3. Growth cone turning assays and 3D gel diffusion assays showed that netrin-1 can attract commissural axons2,4–6. Loss-of-function experiments further demonstrated that commissural axon extension to the midline is severely impaired in absence of netrin-13,7–9. Together these data support a model in which commissural axons are attracted by a netrin-1 gradient diffusing from the midline. Here, we selectively ablated netrin-1 expression in floor plate cells using a Netrin-1 conditional mouse line. We found that hindbrain and spinal cord commissural axons develop normally in absence of floor plate-derived netrin-1. Furthermore, we show that netrin-1 is highly expressed by cells in the ventricular zone with the potential to release it at the pial surface where it binds to commissural axons. Importantly, netrin-1 deletion from the ventricular zone phenocopies commissural axon guidance defects previously described in Netrin-1 knockout mice. These results show that the classical textbook view that attraction of commissural axons is mediated by a gradient of floor plate-derived netrin-1 is inaccurate and that netrin-1 primarily acts locally by promoting growth cone adhesion. 2017-04-26 2017-05-18 /pmc/articles/PMC5438598/ /pubmed/28445456 http://dx.doi.org/10.1038/nature22331 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Dominici, Chloé
Moreno-Bravo, Juan Antonio
Puiggros, Sergi Roig
Rappeneau, Quentin
Rama, Nicolas
Vieugue, Pauline
Bernet, Agnes
Mehlen, Patrick
Chédotal, Alain
Floor plate-derived netrin-1 is dispensable for commissural axon guidance
title Floor plate-derived netrin-1 is dispensable for commissural axon guidance
title_full Floor plate-derived netrin-1 is dispensable for commissural axon guidance
title_fullStr Floor plate-derived netrin-1 is dispensable for commissural axon guidance
title_full_unstemmed Floor plate-derived netrin-1 is dispensable for commissural axon guidance
title_short Floor plate-derived netrin-1 is dispensable for commissural axon guidance
title_sort floor plate-derived netrin-1 is dispensable for commissural axon guidance
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5438598/
https://www.ncbi.nlm.nih.gov/pubmed/28445456
http://dx.doi.org/10.1038/nature22331
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