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Cytolinker Gas2L1 regulates axon morphology through microtubule‐modulated actin stabilization

Crosstalk between the actin and microtubule cytoskeletons underlies cellular morphogenesis. Interactions between actin filaments and microtubules are particularly important for establishing the complex polarized morphology of neurons. Here, we characterized the neuronal function of growth arrest‐spe...

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Autores principales: van de Willige, Dieudonnée, Hummel, Jessica JA, Alkemade, Celine, Kahn, Olga I, Au, Franco KC, Qi, Robert Z, Dogterom, Marileen, Koenderink, Gijsje H, Hoogenraad, Casper C, Akhmanova, Anna
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6831992/
https://www.ncbi.nlm.nih.gov/pubmed/31486213
http://dx.doi.org/10.15252/embr.201947732
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author van de Willige, Dieudonnée
Hummel, Jessica JA
Alkemade, Celine
Kahn, Olga I
Au, Franco KC
Qi, Robert Z
Dogterom, Marileen
Koenderink, Gijsje H
Hoogenraad, Casper C
Akhmanova, Anna
author_facet van de Willige, Dieudonnée
Hummel, Jessica JA
Alkemade, Celine
Kahn, Olga I
Au, Franco KC
Qi, Robert Z
Dogterom, Marileen
Koenderink, Gijsje H
Hoogenraad, Casper C
Akhmanova, Anna
author_sort van de Willige, Dieudonnée
collection PubMed
description Crosstalk between the actin and microtubule cytoskeletons underlies cellular morphogenesis. Interactions between actin filaments and microtubules are particularly important for establishing the complex polarized morphology of neurons. Here, we characterized the neuronal function of growth arrest‐specific 2‐like 1 (Gas2L1), a protein that can directly bind to actin, microtubules and microtubule plus‐end‐tracking end binding proteins. We found that Gas2L1 promotes axon branching, but restricts axon elongation in cultured rat hippocampal neurons. Using pull‐down experiments and in vitro reconstitution assays, in which purified Gas2L1 was combined with actin and dynamic microtubules, we demonstrated that Gas2L1 is autoinhibited. This autoinhibition is relieved by simultaneous binding to actin filaments and microtubules. In neurons, Gas2L1 primarily localizes to the actin cytoskeleton and functions as an actin stabilizer. The microtubule‐binding tail region of Gas2L1 directs its actin‐stabilizing activity towards the axon. We propose that Gas2L1 acts as an actin regulator, the function of which is spatially modulated by microtubules.
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spelling pubmed-68319922019-11-08 Cytolinker Gas2L1 regulates axon morphology through microtubule‐modulated actin stabilization van de Willige, Dieudonnée Hummel, Jessica JA Alkemade, Celine Kahn, Olga I Au, Franco KC Qi, Robert Z Dogterom, Marileen Koenderink, Gijsje H Hoogenraad, Casper C Akhmanova, Anna EMBO Rep Articles Crosstalk between the actin and microtubule cytoskeletons underlies cellular morphogenesis. Interactions between actin filaments and microtubules are particularly important for establishing the complex polarized morphology of neurons. Here, we characterized the neuronal function of growth arrest‐specific 2‐like 1 (Gas2L1), a protein that can directly bind to actin, microtubules and microtubule plus‐end‐tracking end binding proteins. We found that Gas2L1 promotes axon branching, but restricts axon elongation in cultured rat hippocampal neurons. Using pull‐down experiments and in vitro reconstitution assays, in which purified Gas2L1 was combined with actin and dynamic microtubules, we demonstrated that Gas2L1 is autoinhibited. This autoinhibition is relieved by simultaneous binding to actin filaments and microtubules. In neurons, Gas2L1 primarily localizes to the actin cytoskeleton and functions as an actin stabilizer. The microtubule‐binding tail region of Gas2L1 directs its actin‐stabilizing activity towards the axon. We propose that Gas2L1 acts as an actin regulator, the function of which is spatially modulated by microtubules. John Wiley and Sons Inc. 2019-09-05 2019-11-05 /pmc/articles/PMC6831992/ /pubmed/31486213 http://dx.doi.org/10.15252/embr.201947732 Text en © 2019 The Authors. Published under the terms of the CC BY 4.0 license 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 Articles
van de Willige, Dieudonnée
Hummel, Jessica JA
Alkemade, Celine
Kahn, Olga I
Au, Franco KC
Qi, Robert Z
Dogterom, Marileen
Koenderink, Gijsje H
Hoogenraad, Casper C
Akhmanova, Anna
Cytolinker Gas2L1 regulates axon morphology through microtubule‐modulated actin stabilization
title Cytolinker Gas2L1 regulates axon morphology through microtubule‐modulated actin stabilization
title_full Cytolinker Gas2L1 regulates axon morphology through microtubule‐modulated actin stabilization
title_fullStr Cytolinker Gas2L1 regulates axon morphology through microtubule‐modulated actin stabilization
title_full_unstemmed Cytolinker Gas2L1 regulates axon morphology through microtubule‐modulated actin stabilization
title_short Cytolinker Gas2L1 regulates axon morphology through microtubule‐modulated actin stabilization
title_sort cytolinker gas2l1 regulates axon morphology through microtubule‐modulated actin stabilization
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6831992/
https://www.ncbi.nlm.nih.gov/pubmed/31486213
http://dx.doi.org/10.15252/embr.201947732
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