Endogenous insensitivity to the Orco agonist VUAA1 reveals novel olfactory receptor complex properties in the specialist fly Mayetiola destructor

Abstract Insect olfactory receptors are routinely expressed in heterologous systems for functional characterisation. It was recently discovered that the essential olfactory receptor co-receptor (Orco) of the Hessian fly, Mayetiola destructor (Mdes), does not respond to the agonist VUAA1, which activ...

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Main Authors: Jacob A. Corcoran, Yonathan Sonntag, Martin N. Andersson, Urban Johanson, Christer Löfstedt
Format: Article
Language:English
Published: Nature Publishing Group 2018-02-01
Series:Scientific Reports
Online Access:https://doi.org/10.1038/s41598-018-21631-3
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spelling doaj-7648228e83634e18a9a77059675439bc2020-12-08T05:53:07ZengNature Publishing GroupScientific Reports2045-23222018-02-018111310.1038/s41598-018-21631-3Endogenous insensitivity to the Orco agonist VUAA1 reveals novel olfactory receptor complex properties in the specialist fly Mayetiola destructorJacob A. Corcoran0Yonathan Sonntag1Martin N. Andersson2Urban Johanson3Christer Löfstedt4Department of Biology, Lund UniversityDivision of Biochemistry and Structural Biology, Department of Chemistry, Lund UniversityDepartment of Biology, Lund UniversityDivision of Biochemistry and Structural Biology, Department of Chemistry, Lund UniversityDepartment of Biology, Lund UniversityAbstract Insect olfactory receptors are routinely expressed in heterologous systems for functional characterisation. It was recently discovered that the essential olfactory receptor co-receptor (Orco) of the Hessian fly, Mayetiola destructor (Mdes), does not respond to the agonist VUAA1, which activates Orco in all other insects analysed to date. Here, using a mutagenesis-based approach we identified three residues in MdesOrco, located in different transmembrane helices as supported by 3D modelling, that confer sensitivity to VUAA1. Reciprocal mutations in Drosophila melanogaster (Dmel) and the noctuid moth Agrotis segetum (Aseg) Orcos diminish sensitivity of these proteins to VUAA1. Additionally, mutating these residues in DmelOrco and AsegOrco compromised odourant receptor (OR) dependent ligand-induced Orco activation. In contrast, both wild-type and VUAA1-sensitive MdesOrco were capable of forming functional receptor complexes when coupled to ORs from all three species, suggesting unique complex properties in M. destructor, and that not all olfactory receptor complexes are “created” equal.https://doi.org/10.1038/s41598-018-21631-3
collection DOAJ
language English
format Article
sources DOAJ
author Jacob A. Corcoran
Yonathan Sonntag
Martin N. Andersson
Urban Johanson
Christer Löfstedt
spellingShingle Jacob A. Corcoran
Yonathan Sonntag
Martin N. Andersson
Urban Johanson
Christer Löfstedt
Endogenous insensitivity to the Orco agonist VUAA1 reveals novel olfactory receptor complex properties in the specialist fly Mayetiola destructor
Scientific Reports
author_facet Jacob A. Corcoran
Yonathan Sonntag
Martin N. Andersson
Urban Johanson
Christer Löfstedt
author_sort Jacob A. Corcoran
title Endogenous insensitivity to the Orco agonist VUAA1 reveals novel olfactory receptor complex properties in the specialist fly Mayetiola destructor
title_short Endogenous insensitivity to the Orco agonist VUAA1 reveals novel olfactory receptor complex properties in the specialist fly Mayetiola destructor
title_full Endogenous insensitivity to the Orco agonist VUAA1 reveals novel olfactory receptor complex properties in the specialist fly Mayetiola destructor
title_fullStr Endogenous insensitivity to the Orco agonist VUAA1 reveals novel olfactory receptor complex properties in the specialist fly Mayetiola destructor
title_full_unstemmed Endogenous insensitivity to the Orco agonist VUAA1 reveals novel olfactory receptor complex properties in the specialist fly Mayetiola destructor
title_sort endogenous insensitivity to the orco agonist vuaa1 reveals novel olfactory receptor complex properties in the specialist fly mayetiola destructor
publisher Nature Publishing Group
series Scientific Reports
issn 2045-2322
publishDate 2018-02-01
description Abstract Insect olfactory receptors are routinely expressed in heterologous systems for functional characterisation. It was recently discovered that the essential olfactory receptor co-receptor (Orco) of the Hessian fly, Mayetiola destructor (Mdes), does not respond to the agonist VUAA1, which activates Orco in all other insects analysed to date. Here, using a mutagenesis-based approach we identified three residues in MdesOrco, located in different transmembrane helices as supported by 3D modelling, that confer sensitivity to VUAA1. Reciprocal mutations in Drosophila melanogaster (Dmel) and the noctuid moth Agrotis segetum (Aseg) Orcos diminish sensitivity of these proteins to VUAA1. Additionally, mutating these residues in DmelOrco and AsegOrco compromised odourant receptor (OR) dependent ligand-induced Orco activation. In contrast, both wild-type and VUAA1-sensitive MdesOrco were capable of forming functional receptor complexes when coupled to ORs from all three species, suggesting unique complex properties in M. destructor, and that not all olfactory receptor complexes are “created” equal.
url https://doi.org/10.1038/s41598-018-21631-3
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