The RhoGEF trio functions in sculpting class specific dendrite morphogenesis in Drosophila sensory neurons.

As the primary sites of synaptic or sensory input in the nervous system, dendrites play an essential role in processing neuronal and sensory information. Moreover, the specification of class specific dendrite arborization is critically important in establishing neural connectivity and the formation...

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Main Authors: Srividya Chandramouli Iyer, Dennis Wang, Eswar Prasad R Iyer, Sarah A Trunnell, Ramakrishna Meduri, Riaz Shinwari, Mikolaj J Sulkowski, Daniel N Cox
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2012-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3307743?pdf=render
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spelling doaj-3d4183701fad476ca79820b63adeb70c2020-11-25T01:48:33ZengPublic Library of Science (PLoS)PLoS ONE1932-62032012-01-0173e3363410.1371/journal.pone.0033634The RhoGEF trio functions in sculpting class specific dendrite morphogenesis in Drosophila sensory neurons.Srividya Chandramouli IyerDennis WangEswar Prasad R IyerSarah A TrunnellRamakrishna MeduriRiaz ShinwariMikolaj J SulkowskiDaniel N CoxAs the primary sites of synaptic or sensory input in the nervous system, dendrites play an essential role in processing neuronal and sensory information. Moreover, the specification of class specific dendrite arborization is critically important in establishing neural connectivity and the formation of functional networks. Cytoskeletal modulation provides a key mechanism for establishing, as well as reorganizing, dendritic morphology among distinct neuronal subtypes. While previous studies have established differential roles for the small GTPases Rac and Rho in mediating dendrite morphogenesis, little is known regarding the direct regulators of these genes in mediating distinct dendritic architectures.Here we demonstrate that the RhoGEF Trio is required for the specification of class specific dendritic morphology in dendritic arborization (da) sensory neurons of the Drosophila peripheral nervous system (PNS). Trio is expressed in all da neuron subclasses and loss-of-function analyses indicate that Trio functions cell-autonomously in promoting dendritic branching, field coverage, and refining dendritic outgrowth in various da neuron subtypes. Moreover, overexpression studies demonstrate that Trio acts to promote higher order dendritic branching, including the formation of dendritic filopodia, through Trio GEF1-dependent interactions with Rac1, whereas Trio GEF-2-dependent interactions with Rho1 serve to restrict dendritic extension and higher order branching in da neurons. Finally, we show that de novo dendritic branching, induced by the homeodomain transcription factor Cut, requires Trio activity suggesting these molecules may act in a pathway to mediate dendrite morphogenesis.Collectively, our analyses implicate Trio as an important regulator of class specific da neuron dendrite morphogenesis via interactions with Rac1 and Rho1 and indicate that Trio is required as downstream effector in Cut-mediated regulation of dendrite branching and filopodia formation.http://europepmc.org/articles/PMC3307743?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Srividya Chandramouli Iyer
Dennis Wang
Eswar Prasad R Iyer
Sarah A Trunnell
Ramakrishna Meduri
Riaz Shinwari
Mikolaj J Sulkowski
Daniel N Cox
spellingShingle Srividya Chandramouli Iyer
Dennis Wang
Eswar Prasad R Iyer
Sarah A Trunnell
Ramakrishna Meduri
Riaz Shinwari
Mikolaj J Sulkowski
Daniel N Cox
The RhoGEF trio functions in sculpting class specific dendrite morphogenesis in Drosophila sensory neurons.
PLoS ONE
author_facet Srividya Chandramouli Iyer
Dennis Wang
Eswar Prasad R Iyer
Sarah A Trunnell
Ramakrishna Meduri
Riaz Shinwari
Mikolaj J Sulkowski
Daniel N Cox
author_sort Srividya Chandramouli Iyer
title The RhoGEF trio functions in sculpting class specific dendrite morphogenesis in Drosophila sensory neurons.
title_short The RhoGEF trio functions in sculpting class specific dendrite morphogenesis in Drosophila sensory neurons.
title_full The RhoGEF trio functions in sculpting class specific dendrite morphogenesis in Drosophila sensory neurons.
title_fullStr The RhoGEF trio functions in sculpting class specific dendrite morphogenesis in Drosophila sensory neurons.
title_full_unstemmed The RhoGEF trio functions in sculpting class specific dendrite morphogenesis in Drosophila sensory neurons.
title_sort rhogef trio functions in sculpting class specific dendrite morphogenesis in drosophila sensory neurons.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2012-01-01
description As the primary sites of synaptic or sensory input in the nervous system, dendrites play an essential role in processing neuronal and sensory information. Moreover, the specification of class specific dendrite arborization is critically important in establishing neural connectivity and the formation of functional networks. Cytoskeletal modulation provides a key mechanism for establishing, as well as reorganizing, dendritic morphology among distinct neuronal subtypes. While previous studies have established differential roles for the small GTPases Rac and Rho in mediating dendrite morphogenesis, little is known regarding the direct regulators of these genes in mediating distinct dendritic architectures.Here we demonstrate that the RhoGEF Trio is required for the specification of class specific dendritic morphology in dendritic arborization (da) sensory neurons of the Drosophila peripheral nervous system (PNS). Trio is expressed in all da neuron subclasses and loss-of-function analyses indicate that Trio functions cell-autonomously in promoting dendritic branching, field coverage, and refining dendritic outgrowth in various da neuron subtypes. Moreover, overexpression studies demonstrate that Trio acts to promote higher order dendritic branching, including the formation of dendritic filopodia, through Trio GEF1-dependent interactions with Rac1, whereas Trio GEF-2-dependent interactions with Rho1 serve to restrict dendritic extension and higher order branching in da neurons. Finally, we show that de novo dendritic branching, induced by the homeodomain transcription factor Cut, requires Trio activity suggesting these molecules may act in a pathway to mediate dendrite morphogenesis.Collectively, our analyses implicate Trio as an important regulator of class specific da neuron dendrite morphogenesis via interactions with Rac1 and Rho1 and indicate that Trio is required as downstream effector in Cut-mediated regulation of dendrite branching and filopodia formation.
url http://europepmc.org/articles/PMC3307743?pdf=render
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