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Axonal precursor miRNAs hitchhike on endosomes and locally regulate the development of neural circuits

Various species of non‐coding RNAs (ncRNAs) are enriched in specific subcellular compartments, but the mechanisms orchestrating their localization and their local functions remain largely unknown. We investigated both aspects using the elongating retinal ganglion cell axon and its tip, the growth co...

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Autores principales: Corradi, Eloina, Dalla Costa, Irene, Gavoci, Antoneta, Iyer, Archana, Roccuzzo, Michela, Otto, Tegan A, Oliani, Eleonora, Bridi, Simone, Strohbuecker, Stephanie, Santos‐Rodriguez, Gabriela, Valdembri, Donatella, Serini, Guido, Abreu‐Goodger, Cei, Baudet, Marie‐Laure
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/PMC7073465/
https://www.ncbi.nlm.nih.gov/pubmed/32073171
http://dx.doi.org/10.15252/embj.2019102513
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author Corradi, Eloina
Dalla Costa, Irene
Gavoci, Antoneta
Iyer, Archana
Roccuzzo, Michela
Otto, Tegan A
Oliani, Eleonora
Bridi, Simone
Strohbuecker, Stephanie
Santos‐Rodriguez, Gabriela
Valdembri, Donatella
Serini, Guido
Abreu‐Goodger, Cei
Baudet, Marie‐Laure
author_facet Corradi, Eloina
Dalla Costa, Irene
Gavoci, Antoneta
Iyer, Archana
Roccuzzo, Michela
Otto, Tegan A
Oliani, Eleonora
Bridi, Simone
Strohbuecker, Stephanie
Santos‐Rodriguez, Gabriela
Valdembri, Donatella
Serini, Guido
Abreu‐Goodger, Cei
Baudet, Marie‐Laure
author_sort Corradi, Eloina
collection PubMed
description Various species of non‐coding RNAs (ncRNAs) are enriched in specific subcellular compartments, but the mechanisms orchestrating their localization and their local functions remain largely unknown. We investigated both aspects using the elongating retinal ganglion cell axon and its tip, the growth cone, as models. We reveal that specific endogenous precursor microRNAs (pre‐miRNAs) are actively trafficked to distal axons by hitchhiking primarily on late endosomes/lysosomes. Upon exposure to the axon guidance cue semaphorin 3A (Sema3A), pre‐miRNAs are processed specifically within axons into newly generated miRNAs, one of which, in turn, silences the basal translation of tubulin beta 3 class III (TUBB3), but not amyloid beta precursor protein (APP). At the organismal level, these mature miRNAs are required for growth cone steering and a fully functional visual system. Overall, our results uncover a novel mode of ncRNA transport from one cytosolic compartment to another within polarized cells. They also reveal that newly generated miRNAs are critical components of a ncRNA‐based signaling pathway that transduces environmental signals into the structural remodeling of subcellular compartments.
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spelling pubmed-70734652020-03-18 Axonal precursor miRNAs hitchhike on endosomes and locally regulate the development of neural circuits Corradi, Eloina Dalla Costa, Irene Gavoci, Antoneta Iyer, Archana Roccuzzo, Michela Otto, Tegan A Oliani, Eleonora Bridi, Simone Strohbuecker, Stephanie Santos‐Rodriguez, Gabriela Valdembri, Donatella Serini, Guido Abreu‐Goodger, Cei Baudet, Marie‐Laure EMBO J Articles Various species of non‐coding RNAs (ncRNAs) are enriched in specific subcellular compartments, but the mechanisms orchestrating their localization and their local functions remain largely unknown. We investigated both aspects using the elongating retinal ganglion cell axon and its tip, the growth cone, as models. We reveal that specific endogenous precursor microRNAs (pre‐miRNAs) are actively trafficked to distal axons by hitchhiking primarily on late endosomes/lysosomes. Upon exposure to the axon guidance cue semaphorin 3A (Sema3A), pre‐miRNAs are processed specifically within axons into newly generated miRNAs, one of which, in turn, silences the basal translation of tubulin beta 3 class III (TUBB3), but not amyloid beta precursor protein (APP). At the organismal level, these mature miRNAs are required for growth cone steering and a fully functional visual system. Overall, our results uncover a novel mode of ncRNA transport from one cytosolic compartment to another within polarized cells. They also reveal that newly generated miRNAs are critical components of a ncRNA‐based signaling pathway that transduces environmental signals into the structural remodeling of subcellular compartments. John Wiley and Sons Inc. 2020-02-19 2020-03-16 /pmc/articles/PMC7073465/ /pubmed/32073171 http://dx.doi.org/10.15252/embj.2019102513 Text en © 2020 The Authors. Published under the terms of the CC BY NC ND 4.0 license This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Articles
Corradi, Eloina
Dalla Costa, Irene
Gavoci, Antoneta
Iyer, Archana
Roccuzzo, Michela
Otto, Tegan A
Oliani, Eleonora
Bridi, Simone
Strohbuecker, Stephanie
Santos‐Rodriguez, Gabriela
Valdembri, Donatella
Serini, Guido
Abreu‐Goodger, Cei
Baudet, Marie‐Laure
Axonal precursor miRNAs hitchhike on endosomes and locally regulate the development of neural circuits
title Axonal precursor miRNAs hitchhike on endosomes and locally regulate the development of neural circuits
title_full Axonal precursor miRNAs hitchhike on endosomes and locally regulate the development of neural circuits
title_fullStr Axonal precursor miRNAs hitchhike on endosomes and locally regulate the development of neural circuits
title_full_unstemmed Axonal precursor miRNAs hitchhike on endosomes and locally regulate the development of neural circuits
title_short Axonal precursor miRNAs hitchhike on endosomes and locally regulate the development of neural circuits
title_sort axonal precursor mirnas hitchhike on endosomes and locally regulate the development of neural circuits
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7073465/
https://www.ncbi.nlm.nih.gov/pubmed/32073171
http://dx.doi.org/10.15252/embj.2019102513
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