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Molecular Modelling of Oligomeric States of DmOR83b, an Olfactory Receptor in D. Melanogaster

After the discovery of the complete repertoire of D. melanogaster Olfactory Receptors (ORs), candidate ORs have been identified from at least 12 insect species from four orders (Coleoptera, Lepidoptera, Diptera, and Hymenoptera), including species of economic or medical importance. Although all ORs...

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Autores principales: Harini, K., Sowdhamini, R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Libertas Academica 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3320116/
https://www.ncbi.nlm.nih.gov/pubmed/22493562
http://dx.doi.org/10.4137/BBI.S8990
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author Harini, K.
Sowdhamini, R.
author_facet Harini, K.
Sowdhamini, R.
author_sort Harini, K.
collection PubMed
description After the discovery of the complete repertoire of D. melanogaster Olfactory Receptors (ORs), candidate ORs have been identified from at least 12 insect species from four orders (Coleoptera, Lepidoptera, Diptera, and Hymenoptera), including species of economic or medical importance. Although all ORs share the same G-protein coupled receptor structure with seven transmembrane domains, they share poor sequence identity within and between species, and have been identified mainly through genomic data analyses. To date, D. melanogaster remains the only insect species where ORs have been extensively studied, from expression pattern establishment to functional investigations. These studies have confirmed several observations made in vertebrates: one OR type is selectively expressed in a subtype of olfactory receptor neurons, and one olfactory neuron expresses only one type of OR. The olfactory mechanism, further, appears to be conserved between insects and vertebrates. Understanding the function of insect ORs will greatly contribute to the understanding of insect chemical communication mechanisms, particularly with agricultural pests and disease vectors, and could result in future strategies to reduce their negative effects. In this study, we propose molecular models for insect olfactory receptor co-receptor OR83b and its possible functional oligomeric states. The functional similarity of OR83b to GPCRs and ion channels has been exploited for understanding the structure of OR83b. We could observe that C-terminal region (TM4-7) of OR83b is involved in homodimer amd heterodimer formation (with OR22a) which suggests why C-terminus of insect ORs are highly conserved across different species. We also propose two possible ion channel pathways in OR83b: one formed by TM4-5 region with intracellular pore-forming domain and the other formed by TM5-6 with extracellular pore forming domain using analysis of the electrostatics distribution of the pore forming domain.
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spelling pubmed-33201162012-04-10 Molecular Modelling of Oligomeric States of DmOR83b, an Olfactory Receptor in D. Melanogaster Harini, K. Sowdhamini, R. Bioinform Biol Insights Original Research After the discovery of the complete repertoire of D. melanogaster Olfactory Receptors (ORs), candidate ORs have been identified from at least 12 insect species from four orders (Coleoptera, Lepidoptera, Diptera, and Hymenoptera), including species of economic or medical importance. Although all ORs share the same G-protein coupled receptor structure with seven transmembrane domains, they share poor sequence identity within and between species, and have been identified mainly through genomic data analyses. To date, D. melanogaster remains the only insect species where ORs have been extensively studied, from expression pattern establishment to functional investigations. These studies have confirmed several observations made in vertebrates: one OR type is selectively expressed in a subtype of olfactory receptor neurons, and one olfactory neuron expresses only one type of OR. The olfactory mechanism, further, appears to be conserved between insects and vertebrates. Understanding the function of insect ORs will greatly contribute to the understanding of insect chemical communication mechanisms, particularly with agricultural pests and disease vectors, and could result in future strategies to reduce their negative effects. In this study, we propose molecular models for insect olfactory receptor co-receptor OR83b and its possible functional oligomeric states. The functional similarity of OR83b to GPCRs and ion channels has been exploited for understanding the structure of OR83b. We could observe that C-terminal region (TM4-7) of OR83b is involved in homodimer amd heterodimer formation (with OR22a) which suggests why C-terminus of insect ORs are highly conserved across different species. We also propose two possible ion channel pathways in OR83b: one formed by TM4-5 region with intracellular pore-forming domain and the other formed by TM5-6 with extracellular pore forming domain using analysis of the electrostatics distribution of the pore forming domain. Libertas Academica 2012-03-26 /pmc/articles/PMC3320116/ /pubmed/22493562 http://dx.doi.org/10.4137/BBI.S8990 Text en © the author(s), publisher and licensee Libertas Academica Ltd. This is an open access article. Unrestricted non-commercial use is permitted provided the original work is properly cited.
spellingShingle Original Research
Harini, K.
Sowdhamini, R.
Molecular Modelling of Oligomeric States of DmOR83b, an Olfactory Receptor in D. Melanogaster
title Molecular Modelling of Oligomeric States of DmOR83b, an Olfactory Receptor in D. Melanogaster
title_full Molecular Modelling of Oligomeric States of DmOR83b, an Olfactory Receptor in D. Melanogaster
title_fullStr Molecular Modelling of Oligomeric States of DmOR83b, an Olfactory Receptor in D. Melanogaster
title_full_unstemmed Molecular Modelling of Oligomeric States of DmOR83b, an Olfactory Receptor in D. Melanogaster
title_short Molecular Modelling of Oligomeric States of DmOR83b, an Olfactory Receptor in D. Melanogaster
title_sort molecular modelling of oligomeric states of dmor83b, an olfactory receptor in d. melanogaster
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3320116/
https://www.ncbi.nlm.nih.gov/pubmed/22493562
http://dx.doi.org/10.4137/BBI.S8990
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