The hector G-protein coupled receptor is required in a subset of fruitless neurons for male courtship behavior.

Male courtship behavior in Drosophila melanogaster is controlled by two main regulators, fruitless (fru) and doublesex (dsx). Their sex-specific expression in brain neurons has been characterized in detail, but little is known about the downstream targets of the sex-specific FRU and DSX proteins and...

Full description

Bibliographic Details
Main Authors: Yuanli Li, Valbona Hoxha, Chamala Lama, Bich Hien Dinh, Christina N Vo, Brigitte Dauwalder
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2011-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3227663?pdf=render
id doaj-cfaf99f6147f4b17bc37bfc79788b57f
record_format Article
spelling doaj-cfaf99f6147f4b17bc37bfc79788b57f2020-11-24T22:05:31ZengPublic Library of Science (PLoS)PLoS ONE1932-62032011-01-01611e2826910.1371/journal.pone.0028269The hector G-protein coupled receptor is required in a subset of fruitless neurons for male courtship behavior.Yuanli LiValbona HoxhaChamala LamaBich Hien DinhChristina N VoBrigitte DauwalderMale courtship behavior in Drosophila melanogaster is controlled by two main regulators, fruitless (fru) and doublesex (dsx). Their sex-specific expression in brain neurons has been characterized in detail, but little is known about the downstream targets of the sex-specific FRU and DSX proteins and how they specify the function of these neurons. While sexual dimorphism in the number and connections of fru and dsx expressing neurons has been observed, a majority of the neurons that express the two regulators are present in both sexes. This poses the question which molecules define the sex-specific function of these neurons. Signaling molecules are likely to play a significant role. We have identified a predicted G-protein coupled receptor (GPCR), CG4395, that is required for male courtship behavior. The courtship defect in the mutants can be rescued by expression of the wildtype protein in fru neurons of adult males. The GPCR is expressed in a subset of fru-positive antennal glomeruli that have previously been shown to be essential for male courtship. Expression of 4395-RNAi in GH146 projection neurons lowers courtship. This suggests that signaling through the CG4395 GPCR in this subset of fru neurons is critical for male courtship behavior.http://europepmc.org/articles/PMC3227663?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Yuanli Li
Valbona Hoxha
Chamala Lama
Bich Hien Dinh
Christina N Vo
Brigitte Dauwalder
spellingShingle Yuanli Li
Valbona Hoxha
Chamala Lama
Bich Hien Dinh
Christina N Vo
Brigitte Dauwalder
The hector G-protein coupled receptor is required in a subset of fruitless neurons for male courtship behavior.
PLoS ONE
author_facet Yuanli Li
Valbona Hoxha
Chamala Lama
Bich Hien Dinh
Christina N Vo
Brigitte Dauwalder
author_sort Yuanli Li
title The hector G-protein coupled receptor is required in a subset of fruitless neurons for male courtship behavior.
title_short The hector G-protein coupled receptor is required in a subset of fruitless neurons for male courtship behavior.
title_full The hector G-protein coupled receptor is required in a subset of fruitless neurons for male courtship behavior.
title_fullStr The hector G-protein coupled receptor is required in a subset of fruitless neurons for male courtship behavior.
title_full_unstemmed The hector G-protein coupled receptor is required in a subset of fruitless neurons for male courtship behavior.
title_sort hector g-protein coupled receptor is required in a subset of fruitless neurons for male courtship behavior.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2011-01-01
description Male courtship behavior in Drosophila melanogaster is controlled by two main regulators, fruitless (fru) and doublesex (dsx). Their sex-specific expression in brain neurons has been characterized in detail, but little is known about the downstream targets of the sex-specific FRU and DSX proteins and how they specify the function of these neurons. While sexual dimorphism in the number and connections of fru and dsx expressing neurons has been observed, a majority of the neurons that express the two regulators are present in both sexes. This poses the question which molecules define the sex-specific function of these neurons. Signaling molecules are likely to play a significant role. We have identified a predicted G-protein coupled receptor (GPCR), CG4395, that is required for male courtship behavior. The courtship defect in the mutants can be rescued by expression of the wildtype protein in fru neurons of adult males. The GPCR is expressed in a subset of fru-positive antennal glomeruli that have previously been shown to be essential for male courtship. Expression of 4395-RNAi in GH146 projection neurons lowers courtship. This suggests that signaling through the CG4395 GPCR in this subset of fru neurons is critical for male courtship behavior.
url http://europepmc.org/articles/PMC3227663?pdf=render
work_keys_str_mv AT yuanlili thehectorgproteincoupledreceptorisrequiredinasubsetoffruitlessneuronsformalecourtshipbehavior
AT valbonahoxha thehectorgproteincoupledreceptorisrequiredinasubsetoffruitlessneuronsformalecourtshipbehavior
AT chamalalama thehectorgproteincoupledreceptorisrequiredinasubsetoffruitlessneuronsformalecourtshipbehavior
AT bichhiendinh thehectorgproteincoupledreceptorisrequiredinasubsetoffruitlessneuronsformalecourtshipbehavior
AT christinanvo thehectorgproteincoupledreceptorisrequiredinasubsetoffruitlessneuronsformalecourtshipbehavior
AT brigittedauwalder thehectorgproteincoupledreceptorisrequiredinasubsetoffruitlessneuronsformalecourtshipbehavior
AT yuanlili hectorgproteincoupledreceptorisrequiredinasubsetoffruitlessneuronsformalecourtshipbehavior
AT valbonahoxha hectorgproteincoupledreceptorisrequiredinasubsetoffruitlessneuronsformalecourtshipbehavior
AT chamalalama hectorgproteincoupledreceptorisrequiredinasubsetoffruitlessneuronsformalecourtshipbehavior
AT bichhiendinh hectorgproteincoupledreceptorisrequiredinasubsetoffruitlessneuronsformalecourtshipbehavior
AT christinanvo hectorgproteincoupledreceptorisrequiredinasubsetoffruitlessneuronsformalecourtshipbehavior
AT brigittedauwalder hectorgproteincoupledreceptorisrequiredinasubsetoffruitlessneuronsformalecourtshipbehavior
_version_ 1725826049144520704