Cargando…

Direct induction of microtubule branching by microtubule nucleation factor SSNA1

Microtubules are central elements of the eukaryotic cytoskeleton that often function as part of branched networks. Current models for branching include nucleation of new microtubules from severed microtubule seeds or from gamma-tubulin recruited to the side of a pre-existing microtubule. Here, we fo...

Descripción completa

Detalles Bibliográficos
Autores principales: Basnet, Nirakar, Nedozralova, Hana, Crevenna, Alvaro H., Bodakuntla, Satish, Schlichthaerle, Thomas, Taschner, Michael, Cardone, Giovanni, Janke, Carsten, Jungmann, Ralf, Magiera, Maria M., Biertümpfel, Christian, Mizuno, Naoko
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6330057/
https://www.ncbi.nlm.nih.gov/pubmed/30250060
http://dx.doi.org/10.1038/s41556-018-0199-8
_version_ 1783386918397935616
author Basnet, Nirakar
Nedozralova, Hana
Crevenna, Alvaro H.
Bodakuntla, Satish
Schlichthaerle, Thomas
Taschner, Michael
Cardone, Giovanni
Janke, Carsten
Jungmann, Ralf
Magiera, Maria M.
Biertümpfel, Christian
Mizuno, Naoko
author_facet Basnet, Nirakar
Nedozralova, Hana
Crevenna, Alvaro H.
Bodakuntla, Satish
Schlichthaerle, Thomas
Taschner, Michael
Cardone, Giovanni
Janke, Carsten
Jungmann, Ralf
Magiera, Maria M.
Biertümpfel, Christian
Mizuno, Naoko
author_sort Basnet, Nirakar
collection PubMed
description Microtubules are central elements of the eukaryotic cytoskeleton that often function as part of branched networks. Current models for branching include nucleation of new microtubules from severed microtubule seeds or from gamma-tubulin recruited to the side of a pre-existing microtubule. Here, we found that microtubules can be directly remodeled into branched structures by the microtubule-remodeling factor SSNA1 (or also NA14/DIP13). The branching activity of SSNA1 relies on its ability to self-assemble into fibrils in a head-to-tail fashion. SSNA1 fibrils guide protofilaments of a microtubule to split apart to form daughter microtubules. We further found that SSNA1 localizes at axon branching sites and has a key role in neuronal development. SSNA1 mutants that abolish microtubule branching in vitro also fail to promote axon development and branching when overexpressed in neurons. We have therefore, discovered a mechanism for microtubule-branching and implicated its role in neuronal development.
format Online
Article
Text
id pubmed-6330057
institution National Center for Biotechnology Information
language English
publishDate 2018
record_format MEDLINE/PubMed
spelling pubmed-63300572019-03-24 Direct induction of microtubule branching by microtubule nucleation factor SSNA1 Basnet, Nirakar Nedozralova, Hana Crevenna, Alvaro H. Bodakuntla, Satish Schlichthaerle, Thomas Taschner, Michael Cardone, Giovanni Janke, Carsten Jungmann, Ralf Magiera, Maria M. Biertümpfel, Christian Mizuno, Naoko Nat Cell Biol Article Microtubules are central elements of the eukaryotic cytoskeleton that often function as part of branched networks. Current models for branching include nucleation of new microtubules from severed microtubule seeds or from gamma-tubulin recruited to the side of a pre-existing microtubule. Here, we found that microtubules can be directly remodeled into branched structures by the microtubule-remodeling factor SSNA1 (or also NA14/DIP13). The branching activity of SSNA1 relies on its ability to self-assemble into fibrils in a head-to-tail fashion. SSNA1 fibrils guide protofilaments of a microtubule to split apart to form daughter microtubules. We further found that SSNA1 localizes at axon branching sites and has a key role in neuronal development. SSNA1 mutants that abolish microtubule branching in vitro also fail to promote axon development and branching when overexpressed in neurons. We have therefore, discovered a mechanism for microtubule-branching and implicated its role in neuronal development. 2018-09-24 2018-10 /pmc/articles/PMC6330057/ /pubmed/30250060 http://dx.doi.org/10.1038/s41556-018-0199-8 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
Basnet, Nirakar
Nedozralova, Hana
Crevenna, Alvaro H.
Bodakuntla, Satish
Schlichthaerle, Thomas
Taschner, Michael
Cardone, Giovanni
Janke, Carsten
Jungmann, Ralf
Magiera, Maria M.
Biertümpfel, Christian
Mizuno, Naoko
Direct induction of microtubule branching by microtubule nucleation factor SSNA1
title Direct induction of microtubule branching by microtubule nucleation factor SSNA1
title_full Direct induction of microtubule branching by microtubule nucleation factor SSNA1
title_fullStr Direct induction of microtubule branching by microtubule nucleation factor SSNA1
title_full_unstemmed Direct induction of microtubule branching by microtubule nucleation factor SSNA1
title_short Direct induction of microtubule branching by microtubule nucleation factor SSNA1
title_sort direct induction of microtubule branching by microtubule nucleation factor ssna1
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6330057/
https://www.ncbi.nlm.nih.gov/pubmed/30250060
http://dx.doi.org/10.1038/s41556-018-0199-8
work_keys_str_mv AT basnetnirakar directinductionofmicrotubulebranchingbymicrotubulenucleationfactorssna1
AT nedozralovahana directinductionofmicrotubulebranchingbymicrotubulenucleationfactorssna1
AT crevennaalvaroh directinductionofmicrotubulebranchingbymicrotubulenucleationfactorssna1
AT bodakuntlasatish directinductionofmicrotubulebranchingbymicrotubulenucleationfactorssna1
AT schlichthaerlethomas directinductionofmicrotubulebranchingbymicrotubulenucleationfactorssna1
AT taschnermichael directinductionofmicrotubulebranchingbymicrotubulenucleationfactorssna1
AT cardonegiovanni directinductionofmicrotubulebranchingbymicrotubulenucleationfactorssna1
AT jankecarsten directinductionofmicrotubulebranchingbymicrotubulenucleationfactorssna1
AT jungmannralf directinductionofmicrotubulebranchingbymicrotubulenucleationfactorssna1
AT magieramariam directinductionofmicrotubulebranchingbymicrotubulenucleationfactorssna1
AT biertumpfelchristian directinductionofmicrotubulebranchingbymicrotubulenucleationfactorssna1
AT mizunonaoko directinductionofmicrotubulebranchingbymicrotubulenucleationfactorssna1