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A receptor and binding protein interplay in the detection of a distinct pheromone component in the silkmoth Antheraea polyphemus

Male moths respond to conspecific female-released pheromones with remarkable sensitivity and specificity, due to highly specialized chemosensory neurons in their antennae. In Antheraea silkmoths, three types of sensory neurons have been described, each responsive to one of three pheromone components...

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Detalles Bibliográficos
Autores principales: Forstner, Maike, Breer, Heinz, Krieger, Jürgen
Formato: Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2793307/
https://www.ncbi.nlm.nih.gov/pubmed/20011135
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author Forstner, Maike
Breer, Heinz
Krieger, Jürgen
author_facet Forstner, Maike
Breer, Heinz
Krieger, Jürgen
author_sort Forstner, Maike
collection PubMed
description Male moths respond to conspecific female-released pheromones with remarkable sensitivity and specificity, due to highly specialized chemosensory neurons in their antennae. In Antheraea silkmoths, three types of sensory neurons have been described, each responsive to one of three pheromone components. Since also three different pheromone binding proteins (PBPs) have been identified, the antenna of Antheraea seems to provide a unique model system for detailed analyzes of the interplay between the various elements underlying pheromone reception. Efforts to identify pheromone receptors of Antheraea polyphemus have led to the identification of a candidate pheromone receptor (ApolOR1). This receptor was found predominantly expressed in male antennae, specifically in neurons located beneath pheromone-sensitive sensilla trichodea. The ApolOR1-expressing cells were found to be surrounded by supporting cells co-expressing all three ApolPBPs. The response spectrum of ApolOR1 was assessed by means of calcium imaging using HEK293-cells stably expressing the receptor. It was found that at nanomolar concentrations ApolOR1-cells responded to all three pheromones when the compounds were solubilized by DMSO and also when DMSO was substituted by one of the three PBPs. However, at picomolar concentrations, cells responded only in the presence of the subtype ApolPBP2 and the pheromone (E,Z)-6,11-hexadecadienal. These results are indicative of a specific interplay of a distinct pheromone component with an appropriate binding protein and its related receptor subtype, which may be considered as basis for the remarkable sensitivity and specificity of the pheromone detection system.
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spelling pubmed-27933072009-12-15 A receptor and binding protein interplay in the detection of a distinct pheromone component in the silkmoth Antheraea polyphemus Forstner, Maike Breer, Heinz Krieger, Jürgen Int J Biol Sci Research Paper Male moths respond to conspecific female-released pheromones with remarkable sensitivity and specificity, due to highly specialized chemosensory neurons in their antennae. In Antheraea silkmoths, three types of sensory neurons have been described, each responsive to one of three pheromone components. Since also three different pheromone binding proteins (PBPs) have been identified, the antenna of Antheraea seems to provide a unique model system for detailed analyzes of the interplay between the various elements underlying pheromone reception. Efforts to identify pheromone receptors of Antheraea polyphemus have led to the identification of a candidate pheromone receptor (ApolOR1). This receptor was found predominantly expressed in male antennae, specifically in neurons located beneath pheromone-sensitive sensilla trichodea. The ApolOR1-expressing cells were found to be surrounded by supporting cells co-expressing all three ApolPBPs. The response spectrum of ApolOR1 was assessed by means of calcium imaging using HEK293-cells stably expressing the receptor. It was found that at nanomolar concentrations ApolOR1-cells responded to all three pheromones when the compounds were solubilized by DMSO and also when DMSO was substituted by one of the three PBPs. However, at picomolar concentrations, cells responded only in the presence of the subtype ApolPBP2 and the pheromone (E,Z)-6,11-hexadecadienal. These results are indicative of a specific interplay of a distinct pheromone component with an appropriate binding protein and its related receptor subtype, which may be considered as basis for the remarkable sensitivity and specificity of the pheromone detection system. Ivyspring International Publisher 2009-12-03 /pmc/articles/PMC2793307/ /pubmed/20011135 Text en © Ivyspring International Publisher. This is an open-access article distributed under the terms of the Creative Commons License (http://creativecommons.org/licenses/by-nc-nd/3.0/). Reproduction is permitted for personal, noncommercial use, provided that the article is in whole, unmodified, and properly cited.
spellingShingle Research Paper
Forstner, Maike
Breer, Heinz
Krieger, Jürgen
A receptor and binding protein interplay in the detection of a distinct pheromone component in the silkmoth Antheraea polyphemus
title A receptor and binding protein interplay in the detection of a distinct pheromone component in the silkmoth Antheraea polyphemus
title_full A receptor and binding protein interplay in the detection of a distinct pheromone component in the silkmoth Antheraea polyphemus
title_fullStr A receptor and binding protein interplay in the detection of a distinct pheromone component in the silkmoth Antheraea polyphemus
title_full_unstemmed A receptor and binding protein interplay in the detection of a distinct pheromone component in the silkmoth Antheraea polyphemus
title_short A receptor and binding protein interplay in the detection of a distinct pheromone component in the silkmoth Antheraea polyphemus
title_sort receptor and binding protein interplay in the detection of a distinct pheromone component in the silkmoth antheraea polyphemus
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2793307/
https://www.ncbi.nlm.nih.gov/pubmed/20011135
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