The Drosophila gene RanBPM functions in the mushroom body to regulate larval behavior.

In vertebrates, Ran-Binding Protein in the Microtubule Organizing Center (RanBPM) appears to function as a scaffolding protein in a variety of signal transduction pathways. In Drosophila, RanBPM is implicated in the regulation of germ line stem cell (GSC) niche organization in the ovary. Here, we ad...

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Main Authors: Nadia Scantlebury, Xiao Li Zhao, Verónica G Rodriguez Moncalvo, Alison Camiletti, Stacy Zahanova, Aidan Dineen, Ji-Hou Xin, Ana Regina Campos
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2010-05-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC2871054?pdf=render
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spelling doaj-646490d9bdbe417da4ac08ee276b3fab2020-11-25T02:15:26ZengPublic Library of Science (PLoS)PLoS ONE1932-62032010-05-0155e1065210.1371/journal.pone.0010652The Drosophila gene RanBPM functions in the mushroom body to regulate larval behavior.Nadia ScantleburyXiao Li ZhaoVerónica G Rodriguez MoncalvoAlison CamilettiStacy ZahanovaAidan DineenJi-Hou XinAna Regina CamposIn vertebrates, Ran-Binding Protein in the Microtubule Organizing Center (RanBPM) appears to function as a scaffolding protein in a variety of signal transduction pathways. In Drosophila, RanBPM is implicated in the regulation of germ line stem cell (GSC) niche organization in the ovary. Here, we addressed the role of RanBPM in nervous system function in the context of Drosophila larval behavior.We report that in Drosophila, RanBPM is required for larval feeding, light-induced changes in locomotion, and viability. RanBPM is highly expressed in the Kenyon cells of the larval mushroom body (MB), a structure well studied for its role in associative learning in Drosophila and other insects. RanBPM mutants do not display major disruption in nervous system morphology besides reduced proliferation. Expression of the RanBPM gene in the Kenyon cells is sufficient to rescue all behavioral phenotypes. Through genetic epistasis experiments, we demonstrate that RanBPM participates with the Drosophila orthologue of the Fragile X Mental Retardation Protein (FMRP) in the development of neuromuscular junction (NMJ).We demonstrate that the RanBPM gene functions in the MB neurons for larval behavior. Our results suggest a role for this gene in an FMRP-dependent process. Taken together our findings point to a novel role for the MB in larval behavior.http://europepmc.org/articles/PMC2871054?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Nadia Scantlebury
Xiao Li Zhao
Verónica G Rodriguez Moncalvo
Alison Camiletti
Stacy Zahanova
Aidan Dineen
Ji-Hou Xin
Ana Regina Campos
spellingShingle Nadia Scantlebury
Xiao Li Zhao
Verónica G Rodriguez Moncalvo
Alison Camiletti
Stacy Zahanova
Aidan Dineen
Ji-Hou Xin
Ana Regina Campos
The Drosophila gene RanBPM functions in the mushroom body to regulate larval behavior.
PLoS ONE
author_facet Nadia Scantlebury
Xiao Li Zhao
Verónica G Rodriguez Moncalvo
Alison Camiletti
Stacy Zahanova
Aidan Dineen
Ji-Hou Xin
Ana Regina Campos
author_sort Nadia Scantlebury
title The Drosophila gene RanBPM functions in the mushroom body to regulate larval behavior.
title_short The Drosophila gene RanBPM functions in the mushroom body to regulate larval behavior.
title_full The Drosophila gene RanBPM functions in the mushroom body to regulate larval behavior.
title_fullStr The Drosophila gene RanBPM functions in the mushroom body to regulate larval behavior.
title_full_unstemmed The Drosophila gene RanBPM functions in the mushroom body to regulate larval behavior.
title_sort drosophila gene ranbpm functions in the mushroom body to regulate larval behavior.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2010-05-01
description In vertebrates, Ran-Binding Protein in the Microtubule Organizing Center (RanBPM) appears to function as a scaffolding protein in a variety of signal transduction pathways. In Drosophila, RanBPM is implicated in the regulation of germ line stem cell (GSC) niche organization in the ovary. Here, we addressed the role of RanBPM in nervous system function in the context of Drosophila larval behavior.We report that in Drosophila, RanBPM is required for larval feeding, light-induced changes in locomotion, and viability. RanBPM is highly expressed in the Kenyon cells of the larval mushroom body (MB), a structure well studied for its role in associative learning in Drosophila and other insects. RanBPM mutants do not display major disruption in nervous system morphology besides reduced proliferation. Expression of the RanBPM gene in the Kenyon cells is sufficient to rescue all behavioral phenotypes. Through genetic epistasis experiments, we demonstrate that RanBPM participates with the Drosophila orthologue of the Fragile X Mental Retardation Protein (FMRP) in the development of neuromuscular junction (NMJ).We demonstrate that the RanBPM gene functions in the MB neurons for larval behavior. Our results suggest a role for this gene in an FMRP-dependent process. Taken together our findings point to a novel role for the MB in larval behavior.
url http://europepmc.org/articles/PMC2871054?pdf=render
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