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Autoinhibition of kinesin-1 is essential to the dendrite-specific localization of Golgi outposts

Neuronal polarity relies on the selective localization of cargo to axons or dendrites. The molecular motor kinesin-1 moves cargo into axons but is also active in dendrites. This raises the question of how kinesin-1 activity is regulated to maintain the compartment-specific localization of cargo. Our...

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Autores principales: Kelliher, Michael T., Yue, Yang, Ng, Ashley, Kamiyama, Daichi, Huang, Bo, Verhey, Kristen J., Wildonger, Jill
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Rockefeller University Press 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6028532/
https://www.ncbi.nlm.nih.gov/pubmed/29728423
http://dx.doi.org/10.1083/jcb.201708096
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author Kelliher, Michael T.
Yue, Yang
Ng, Ashley
Kamiyama, Daichi
Huang, Bo
Verhey, Kristen J.
Wildonger, Jill
author_facet Kelliher, Michael T.
Yue, Yang
Ng, Ashley
Kamiyama, Daichi
Huang, Bo
Verhey, Kristen J.
Wildonger, Jill
author_sort Kelliher, Michael T.
collection PubMed
description Neuronal polarity relies on the selective localization of cargo to axons or dendrites. The molecular motor kinesin-1 moves cargo into axons but is also active in dendrites. This raises the question of how kinesin-1 activity is regulated to maintain the compartment-specific localization of cargo. Our in vivo structure–function analysis of endogenous Drosophila melanogaster kinesin-1 reveals a novel role for autoinhibition in enabling the dendrite-specific localization of Golgi outposts. Mutations that disrupt kinesin-1 autoinhibition result in the axonal mislocalization of Golgi outposts. Autoinhibition also regulates kinesin-1 localization. Uninhibited kinesin-1 accumulates in axons and is depleted from dendrites, correlating with the change in outpost distribution and dendrite growth defects. Genetic interaction tests show that a balance of kinesin-1 inhibition and dynein activity is necessary to localize Golgi outposts to dendrites and keep them from entering axons. Our data indicate that kinesin-1 activity is precisely regulated by autoinhibition to achieve the selective localization of dendritic cargo.
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spelling pubmed-60285322018-07-05 Autoinhibition of kinesin-1 is essential to the dendrite-specific localization of Golgi outposts Kelliher, Michael T. Yue, Yang Ng, Ashley Kamiyama, Daichi Huang, Bo Verhey, Kristen J. Wildonger, Jill J Cell Biol Research Articles Neuronal polarity relies on the selective localization of cargo to axons or dendrites. The molecular motor kinesin-1 moves cargo into axons but is also active in dendrites. This raises the question of how kinesin-1 activity is regulated to maintain the compartment-specific localization of cargo. Our in vivo structure–function analysis of endogenous Drosophila melanogaster kinesin-1 reveals a novel role for autoinhibition in enabling the dendrite-specific localization of Golgi outposts. Mutations that disrupt kinesin-1 autoinhibition result in the axonal mislocalization of Golgi outposts. Autoinhibition also regulates kinesin-1 localization. Uninhibited kinesin-1 accumulates in axons and is depleted from dendrites, correlating with the change in outpost distribution and dendrite growth defects. Genetic interaction tests show that a balance of kinesin-1 inhibition and dynein activity is necessary to localize Golgi outposts to dendrites and keep them from entering axons. Our data indicate that kinesin-1 activity is precisely regulated by autoinhibition to achieve the selective localization of dendritic cargo. Rockefeller University Press 2018-07-02 /pmc/articles/PMC6028532/ /pubmed/29728423 http://dx.doi.org/10.1083/jcb.201708096 Text en © 2018 Kelliher et al. https://creativecommons.org/licenses/by/4.0/This article is available under a Creative Commons License (Attribution 4.0 International, as described at https://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Articles
Kelliher, Michael T.
Yue, Yang
Ng, Ashley
Kamiyama, Daichi
Huang, Bo
Verhey, Kristen J.
Wildonger, Jill
Autoinhibition of kinesin-1 is essential to the dendrite-specific localization of Golgi outposts
title Autoinhibition of kinesin-1 is essential to the dendrite-specific localization of Golgi outposts
title_full Autoinhibition of kinesin-1 is essential to the dendrite-specific localization of Golgi outposts
title_fullStr Autoinhibition of kinesin-1 is essential to the dendrite-specific localization of Golgi outposts
title_full_unstemmed Autoinhibition of kinesin-1 is essential to the dendrite-specific localization of Golgi outposts
title_short Autoinhibition of kinesin-1 is essential to the dendrite-specific localization of Golgi outposts
title_sort autoinhibition of kinesin-1 is essential to the dendrite-specific localization of golgi outposts
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6028532/
https://www.ncbi.nlm.nih.gov/pubmed/29728423
http://dx.doi.org/10.1083/jcb.201708096
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