RAB-10-Dependent Membrane Transport Is Required for Dendrite Arborization.

Formation of elaborately branched dendrites is necessary for the proper input and connectivity of many sensory neurons. Previous studies have revealed that dendritic growth relies heavily on ER-to-Golgi transport, Golgi outposts and endocytic recycling. How new membrane and associated cargo is deliv...

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Main Authors: Wei Zou, Smita Yadav, Laura DeVault, Yuh Nung Jan, David R Sherwood
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2015-01-01
Series:PLoS Genetics
Online Access:http://europepmc.org/articles/PMC4578882?pdf=render
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spelling doaj-c697ce442f6844ea9cadd2614c4178702020-11-24T21:41:59ZengPublic Library of Science (PLoS)PLoS Genetics1553-73901553-74042015-01-01119e100548410.1371/journal.pgen.1005484RAB-10-Dependent Membrane Transport Is Required for Dendrite Arborization.Wei ZouSmita YadavLaura DeVaultYuh Nung JanDavid R SherwoodFormation of elaborately branched dendrites is necessary for the proper input and connectivity of many sensory neurons. Previous studies have revealed that dendritic growth relies heavily on ER-to-Golgi transport, Golgi outposts and endocytic recycling. How new membrane and associated cargo is delivered from the secretory and endosomal compartments to sites of active dendritic growth, however, remains unknown. Using a candidate-based genetic screen in C. elegans, we have identified the small GTPase RAB-10 as a key regulator of membrane trafficking during dendrite morphogenesis. Loss of rab-10 severely reduced proximal dendritic arborization in the multi-dendritic PVD neuron. RAB-10 acts cell-autonomously in the PVD neuron and localizes to the Golgi and early endosomes. Loss of function mutations of the exocyst complex components exoc-8 and sec-8, which regulate tethering, docking and fusion of transport vesicles at the plasma membrane, also caused proximal dendritic arborization defects and led to the accumulation of intracellular RAB-10 vesicles. In rab-10 and exoc-8 mutants, the trans-membrane proteins DMA-1 and HPO-30, which promote PVD dendrite stabilization and branching, no longer localized strongly to the proximal dendritic membranes and instead were sequestered within intracellular vesicles. Together these results suggest a crucial role for the Rab10 GTPase and the exocyst complex in controlling membrane transport from the secretory and/or endosomal compartments that is required for dendritic growth.http://europepmc.org/articles/PMC4578882?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Wei Zou
Smita Yadav
Laura DeVault
Yuh Nung Jan
David R Sherwood
spellingShingle Wei Zou
Smita Yadav
Laura DeVault
Yuh Nung Jan
David R Sherwood
RAB-10-Dependent Membrane Transport Is Required for Dendrite Arborization.
PLoS Genetics
author_facet Wei Zou
Smita Yadav
Laura DeVault
Yuh Nung Jan
David R Sherwood
author_sort Wei Zou
title RAB-10-Dependent Membrane Transport Is Required for Dendrite Arborization.
title_short RAB-10-Dependent Membrane Transport Is Required for Dendrite Arborization.
title_full RAB-10-Dependent Membrane Transport Is Required for Dendrite Arborization.
title_fullStr RAB-10-Dependent Membrane Transport Is Required for Dendrite Arborization.
title_full_unstemmed RAB-10-Dependent Membrane Transport Is Required for Dendrite Arborization.
title_sort rab-10-dependent membrane transport is required for dendrite arborization.
publisher Public Library of Science (PLoS)
series PLoS Genetics
issn 1553-7390
1553-7404
publishDate 2015-01-01
description Formation of elaborately branched dendrites is necessary for the proper input and connectivity of many sensory neurons. Previous studies have revealed that dendritic growth relies heavily on ER-to-Golgi transport, Golgi outposts and endocytic recycling. How new membrane and associated cargo is delivered from the secretory and endosomal compartments to sites of active dendritic growth, however, remains unknown. Using a candidate-based genetic screen in C. elegans, we have identified the small GTPase RAB-10 as a key regulator of membrane trafficking during dendrite morphogenesis. Loss of rab-10 severely reduced proximal dendritic arborization in the multi-dendritic PVD neuron. RAB-10 acts cell-autonomously in the PVD neuron and localizes to the Golgi and early endosomes. Loss of function mutations of the exocyst complex components exoc-8 and sec-8, which regulate tethering, docking and fusion of transport vesicles at the plasma membrane, also caused proximal dendritic arborization defects and led to the accumulation of intracellular RAB-10 vesicles. In rab-10 and exoc-8 mutants, the trans-membrane proteins DMA-1 and HPO-30, which promote PVD dendrite stabilization and branching, no longer localized strongly to the proximal dendritic membranes and instead were sequestered within intracellular vesicles. Together these results suggest a crucial role for the Rab10 GTPase and the exocyst complex in controlling membrane transport from the secretory and/or endosomal compartments that is required for dendritic growth.
url http://europepmc.org/articles/PMC4578882?pdf=render
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